Gene description for PSMD8
Gene name proteasome (prosome, macropain) 26S subunit, non-ATPase, 8
Gene symbol PSMD8
Other names/aliases HEL-S-91n
HIP6
HYPF
Nin1p
Rpn12
S14
p31
Species Homo sapiens
 Database cross references - PSMD8
ExoCarta ExoCarta_5714
Vesiclepedia VP_5714
Entrez Gene 5714
HGNC 9566
UniProt P48556  
 PSMD8 identified in sEVs derived from the following tissue/cell type
Bone marrow mesenchymal stem cells 36408942    
Bone marrow mesenchymal stem cells 36408942    
Bone marrow mesenchymal stem cells 36408942    
Bone marrow mesenchymal stem cells 36408942    
Breast cancer cells 34108659    
Breast cancer cells 34108659    
Chondrocytes 35931686    
Chondrocytes 35931686    
Colorectal cancer cells 34887515    
Embryonic kidney cells 34108659    
Embryonic kidney cells 34108659    
Embryonic kidney cells 36706192    
Embryonic kidney cells 36706192    
Gastric cancer cells 33991177    
Gastric cancer cells 33991177    
Gastric cancer cells 33991177    
Mesenchymal stem cells 36408942    
Pancreatic cancer cells 34108659    
Pancreatic cancer cells 34108659    
Thymus 23844026    
 Gene ontology annotations for PSMD8
Molecular Function
    protein binding GO:0005515 IPI
Biological Process
    proteasome-mediated ubiquitin-dependent protein catabolic process GO:0043161 IBA
    proteasome-mediated ubiquitin-dependent protein catabolic process GO:0043161 NAS
Subcellular Localization
    proteasome complex GO:0000502 IDA
    proteasome complex GO:0000502 NAS
    nucleus GO:0005634 HDA
    nucleus GO:0005634 IBA
    nucleoplasm GO:0005654 TAS
    cytosol GO:0005829 TAS
    proteasome regulatory particle GO:0005838 TAS
    proteasome regulatory particle, lid subcomplex GO:0008541 IBA
    proteasome regulatory particle, lid subcomplex GO:0008541 ISS
    proteasome accessory complex GO:0022624 ISS
 Experiment description of studies that identified PSMD8 in sEVs
1
Experiment ID 489
MISEV standards
EM
Biophysical techniques
Cd9|Cd81|Cd63|Gapdh|Sdcbp|Lamp1|Aqp1|Rab5a|Icam1|Cd82|Itga2b|Tsg101|Lamp2|Rab35|Flot1|Flot2|Cd151|Rab5b|Tfrc|Uchl1
Enriched markers
Canx
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36408942    
Organism Rattus norvegicus
Experiment description Quantitative proteomic analysis of exosomes from umbilical cord mesenchymal stem cells and rat bone marrow stem cells
Authors "Xu X, Yin F, Guo M, Gan G, Lin G, Wen C, Wang J, Song P, Wang J, Qi ZQ, Zhong CQ."
Journal name Proteomics
Publication year 2023
Sample Bone marrow mesenchymal stem cells
Sample name BMSC - Passage 6
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
2
Experiment ID 490
MISEV standards
EM
Biophysical techniques
Cd9|Cd81|Cd63|Gapdh|Sdcbp|Lamp1|Aqp1|Rab5a|Icam1|Cd82|Itga2b|Tsg101|Lamp2|Rab35|Flot1|Flot2|Cd151|Rab5b|Tfrc|Uchl1
Enriched markers
Canx
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36408942    
Organism Rattus norvegicus
Experiment description Quantitative proteomic analysis of exosomes from umbilical cord mesenchymal stem cells and rat bone marrow stem cells
Authors "Xu X, Yin F, Guo M, Gan G, Lin G, Wen C, Wang J, Song P, Wang J, Qi ZQ, Zhong CQ."
Journal name Proteomics
Publication year 2023
Sample Bone marrow mesenchymal stem cells
Sample name BMSC - Passage 7
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
3
Experiment ID 491
MISEV standards
EM
Biophysical techniques
Cd9|Cd81|Cd63|Gapdh|Sdcbp|Lamp1|Aqp1|Rab5a|Icam1|Cd82|Itga2b|Tsg101|Lamp2|Rab35|Flot1|Flot2|Cd151|Rab5b|Tfrc|Uchl1
Enriched markers
Canx
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36408942    
Organism Rattus norvegicus
Experiment description Quantitative proteomic analysis of exosomes from umbilical cord mesenchymal stem cells and rat bone marrow stem cells
Authors "Xu X, Yin F, Guo M, Gan G, Lin G, Wen C, Wang J, Song P, Wang J, Qi ZQ, Zhong CQ."
Journal name Proteomics
Publication year 2023
Sample Bone marrow mesenchymal stem cells
Sample name BMSC - Passage 8
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
4
Experiment ID 492
MISEV standards
EM
Biophysical techniques
Cd9|Cd81|Cd63|Gapdh|Sdcbp|Lamp1|Aqp1|Rab5a|Icam1|Cd82|Itga2b|Tsg101|Lamp2|Rab35|Flot1|Flot2|Cd151|Rab5b|Tfrc|Uchl1
Enriched markers
Canx
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36408942    
Organism Rattus norvegicus
Experiment description Quantitative proteomic analysis of exosomes from umbilical cord mesenchymal stem cells and rat bone marrow stem cells
Authors "Xu X, Yin F, Guo M, Gan G, Lin G, Wen C, Wang J, Song P, Wang J, Qi ZQ, Zhong CQ."
Journal name Proteomics
Publication year 2023
Sample Bone marrow mesenchymal stem cells
Sample name BMSC - Passage 9
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
5
Experiment ID 426
MISEV standards
Biophysical techniques
SDCBP|FLOT1|CD81|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Breast cancer cells
Sample name MDA-MB-231 - Exo-rich fractions 7-10 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Size exclusion chromatography
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
6
Experiment ID 427
MISEV standards
Biophysical techniques
CD81|SDCBP|FLOT1|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Breast cancer cells
Sample name MDA-MB-231 - Exo-rich fractions 1-6 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
7
Experiment ID 497
MISEV standards
Biophysical techniques
CD9|CD151|CD63|CD81|CD82|FLOT1|FLOT2|GAPDH|LAMP1|LAMP2|RAB5A|SDCBP|TFRC|TSG101|UCHL1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 35931686    
Organism Homo sapiens
Experiment description Extracellular vesicles enriched in connexin 43 promote a senescent phenotype in bone and synovial cells contributing to osteoarthritis progression
Authors "Varela-Eirín M, Carpintero-Fernández P, Guitián-Caamaño A, Varela-Vázquez A, García-Yuste A, Sánchez-Temprano A, Bravo-López SB, Yañez-Cabanas J, Fonseca E, Largo R, Mobasheri A, Caeiro JR, Mayán MD."
Journal name Cell Death Dis
Publication year 2022
Sample Chondrocytes
Sample name T/C-28a2
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
8
Experiment ID 498
MISEV standards
EM
Biophysical techniques
CD9|CD151|CD63|CD81|CD82|FLOT1|FLOT2|GAPDH|LAMP1|LAMP2|RAB5A|SDCBP|TFRC|TSG101|UCHL1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 35931686    
Organism Homo sapiens
Experiment description Extracellular vesicles enriched in connexin 43 promote a senescent phenotype in bone and synovial cells contributing to osteoarthritis progression
Authors "Varela-Eirín M, Carpintero-Fernández P, Guitián-Caamaño A, Varela-Vázquez A, García-Yuste A, Sánchez-Temprano A, Bravo-López SB, Yañez-Cabanas J, Fonseca E, Largo R, Mobasheri A, Caeiro JR, Mayán MD."
Journal name Cell Death Dis
Publication year 2022
Sample Chondrocytes
Sample name T/C-28a2
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
9
Experiment ID 1203
MISEV standards
EM
Biophysical techniques
SDCBP|FLOT1|CD9|CD81|CD63|EPCAM|GAPDH|LAMP1|TFRC|CD151|CD82|LAMP2|RAB35|TSG101|FLOT2|RAB5B|ICAM1|RAB5A
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 34887515    
Organism Homo sapiens
Experiment description Supermeres are functional extracellular nanoparticles replete with disease biomarkers and therapeutic targets
Authors "Zhang Q, Jeppesen DK, Higginbotham JN, Graves-Deal R, Trinh VQ, Ramirez MA, Sohn Y, Neininger AC, Taneja N, McKinley ET, Niitsu H, Cao Z, Evans R, Glass SE, Ray KC, Fissell WH, Hill S, Rose KL, Huh WJ, Washington MK, Ayers GD, Burnette DT, Sharma S, Rome LH, Franklin JL, Lee YA, Liu Q, Coffey RJ."
Journal name Nat Cell Biol
Publication year 2021
Sample Colorectal cancer cells
Sample name DiFi
Isolation/purification methods Differential centrifugation
Filtration
Centrifugal ultrafiltration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density -
Molecules identified in the study Protein
miRNA
Methods used in the study Western blotting
Mass spectrometry
RNA sequencing
10
Experiment ID 419
MISEV standards
Biophysical techniques
SDCBP|FLOT1|CD81|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Embryonic kidney cells
Sample name HEK293T - Exo-rich fractions 7-10 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Size exclusion chromatography
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
11
Experiment ID 419
MISEV standards
Biophysical techniques
SDCBP|FLOT1|CD81|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Embryonic kidney cells
Sample name HEK293T - Exo-rich fractions 7-10 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Size exclusion chromatography
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
12
Experiment ID 420
MISEV standards
Biophysical techniques
CD81|SDCBP|FLOT1|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Embryonic kidney cells
Sample name HEK293T - Exo-rich fractions 1-6 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
13
Experiment ID 420
MISEV standards
Biophysical techniques
CD81|SDCBP|FLOT1|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Embryonic kidney cells
Sample name HEK293T - Exo-rich fractions 1-6 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
14
Experiment ID 1275
MISEV standards
Biophysical techniques
CD9|TSG101|FLOT1|FLOT2|RAB35|RAB5A|GAPDH|TFRC|CD63|Alix
Enriched markers
PCNA|CANX|GAPDH|HSP90AA1|HSP90B1
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36706192    
Organism Homo sapiens
Experiment description Displaying and delivering viral membrane antigens via WW domain-activated extracellular vesicles
Authors "Choi S, Yang Z, Wang Q, Qiao Z, Sun M, Wiggins J, Xiang SH, Lu Q."
Journal name Sci Adv
Publication year 2023
Sample Embryonic kidney cells
Sample name HEK293T
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
15
Experiment ID 1280
MISEV standards
Biophysical techniques
TSG101|CD9|FLOT1|FLOT2|RAB35|RAB5A|GAPDH|TFRC|CD63|Alix
Enriched markers
PCNA|CANX|GAPDH|HSP90AA1|HSP90B1
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36706192    
Organism Homo sapiens
Experiment description Displaying and delivering viral membrane antigens via WW domain-activated extracellular vesicles
Authors "Choi S, Yang Z, Wang Q, Qiao Z, Sun M, Wiggins J, Xiang SH, Lu Q."
Journal name Sci Adv
Publication year 2023
Sample Embryonic kidney cells
Sample name HEK293T - Fraction 5
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density 1.151 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
16
Experiment ID 363
MISEV standards
Biophysical techniques
TSG101|GAPDH|AQP1|CD151|CD81|CD82|CD9|EPCAM|FLOT1|FLOT2|ICAM1|ITGA2B|LAMP2|RAB35|RAB5A|RAB5B|SDCBP|TFRC|UCHL1
Enriched markers
DCLK1
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 33991177    
Organism Homo sapiens
Experiment description Cancer stem cell marker DCLK1 reprograms small extracellular vesicles toward migratory phenotype in gastric cancer cells
Authors "Carli ALE, Afshar-Sterle S, Rai A, Fang H, O'Keefe R, Tse J, Ferguson FM, Gray NS, Ernst M, Greening DW, Buchert M."
Journal name Proteomics
Publication year 2021
Sample Gastric cancer cells
Sample name MKN1 - 100K pellet
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
17
Experiment ID 364
MISEV standards
Biophysical techniques
TSG101|GAPDH|AQP1|CD151|CD81|CD82|CD9|EPCAM|FLOT1|FLOT2|ICAM1|ITGA2B|LAMP2|RAB35|RAB5A|RAB5B|SDCBP|TFRC|UCHL1
Enriched markers
DCLK1
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 33991177    
Organism Homo sapiens
Experiment description Cancer stem cell marker DCLK1 reprograms small extracellular vesicles toward migratory phenotype in gastric cancer cells
Authors "Carli ALE, Afshar-Sterle S, Rai A, Fang H, O'Keefe R, Tse J, Ferguson FM, Gray NS, Ernst M, Greening DW, Buchert M."
Journal name Proteomics
Publication year 2021
Sample Gastric cancer cells
Sample name MKN1 - 100K pellet
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
18
Experiment ID 365
MISEV standards
Biophysical techniques
TSG101|GAPDH|AQP1|CD151|CD81|CD82|CD9|EPCAM|FLOT1|FLOT2|ICAM1|ITGA2B|LAMP2|RAB35|RAB5A|RAB5B|SDCBP|TFRC|UCHL1
Enriched markers
DCLK1
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 33991177    
Organism Homo sapiens
Experiment description Cancer stem cell marker DCLK1 reprograms small extracellular vesicles toward migratory phenotype in gastric cancer cells
Authors "Carli ALE, Afshar-Sterle S, Rai A, Fang H, O'Keefe R, Tse J, Ferguson FM, Gray NS, Ernst M, Greening DW, Buchert M."
Journal name Proteomics
Publication year 2021
Sample Gastric cancer cells
Sample name MKN1 - 100K pellet
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
19
Experiment ID 488
MISEV standards
EM
Biophysical techniques
CD9|CD81|CD63|GAPDH|SDCBP|LAMP1|TFRC|UCHL1|FLOT2|LAMP2|FLOT1|ICAM1|RAB5B|CD151|RAB35|TSG101|RAB5A|CD82
Enriched markers
CANX
Negative markers
NTA
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 36408942    
Organism Homo sapiens
Experiment description Quantitative proteomic analysis of exosomes from umbilical cord mesenchymal stem cells and rat bone marrow stem cells
Authors "Xu X, Yin F, Guo M, Gan G, Lin G, Wen C, Wang J, Song P, Wang J, Qi ZQ, Zhong CQ."
Journal name Proteomics
Publication year 2023
Sample Mesenchymal stem cells
Sample name UCMSC
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectometry
20
Experiment ID 434
MISEV standards
Biophysical techniques
SDCBP|FLOT1|CD81|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Pancreatic cancer cells
Sample name PANC-1 - Exo-rich fractions 7-10 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Size exclusion chromatography
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
21
Experiment ID 435
MISEV standards
Biophysical techniques
CD81|SDCBP|FLOT1|CD9|CD151|FLOT2|TSG101|LAMP1|TFRC|RAB5A|RAB35|GAPDH|UCHL1|ICAM1
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule Protein
Identification method Mass spectrometry
PubMed ID 34108659    
Organism Homo sapiens
Experiment description Quantitative Proteomics Identifies the Core Proteome of Exosomes with Syntenin-1 as the highest abundant protein and a Putative Universal Biomarker
Authors "Kugeratski FG, Hodge K, Lilla S, McAndrews KM, Zhou X, Hwang RF, Zanivan S, Kalluri R."
Journal name Nat Cell Biol
Publication year 2021
Sample Pancreatic cancer cells
Sample name PANC-1 - Exo-rich fractions 1-6 pooled
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
OptiPrep density gradient centrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
22
Experiment ID 217
MISEV standards
EM
Biophysical techniques
TSG101|CD81|CD9|CD63
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 23844026    
Organism Homo sapiens
Experiment description Characterization of human thymic exosomes.
Authors "Skogberg G, Gudmundsdottir J, van der Post S, Sandstrom K, Bruhn S, Benson M, Mincheva-Nilsson L, Baranov V, Telemo E, Ekwall O."
Journal name PLoS One
Publication year 2013
Sample Thymus
Sample name Normal-Thymus
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
 Protein-protein interactions for PSMD8
  Protein Interactor ExoCarta ID Identification method PubMed Species
1 UBE2H 7328
Affinity Capture-MS Homo sapiens
2 PSMA6 5687
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
3 PSME2 5721
Co-fractionation Homo sapiens
4 ISG15 9636
Affinity Capture-MS Homo sapiens
5 DNAJC11 55735
Proximity Label-MS Homo sapiens
6 PSMD6 9861
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
7 PSMA4 5685
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
8 PSMD11 5717
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
9 BTF3 689
Affinity Capture-MS Homo sapiens
10 ABCF1 23
Co-fractionation Homo sapiens
11 UBE3A 7337
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
12 UBC 7316
Affinity Capture-MS Homo sapiens
Reconstituted Complex Homo sapiens
13 PSMD10 5716
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
14 CCDC92  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
15 PSMB8 5696
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
16 GSK3A 2931
Two-hybrid Homo sapiens
17 GRHPR 9380
Cross-Linking-MS (XL-MS) Homo sapiens
18 KIAA1429 25962
Affinity Capture-MS Homo sapiens
19 PAAF1 80227
Affinity Capture-MS Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
20 NLRP13  
Co-fractionation Homo sapiens
21 KLF8  
Affinity Capture-MS Homo sapiens
22 PSMD9 5715
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
23 PSMD12 5718
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
24 PSMB6 5694
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
25 PSMC6 5706
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
26 PSMC2 5701
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-Western Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
27 ABCE1 6059
Affinity Capture-MS Homo sapiens
28 UCHL5 51377
Two-hybrid Homo sapiens
Reconstituted Complex Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
29 PSMB9 5698
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
30 PSMA8 143471
Co-fractionation Homo sapiens
31 PSMD5 5711
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
32 SNX27 81609
Affinity Capture-MS Homo sapiens
33 MAD2L1 4085
Affinity Capture-Western Homo sapiens
Affinity Capture-MS Homo sapiens
34 PSMC3 5702
Affinity Capture-Western Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
35 RAD23A 5886
Affinity Capture-MS Homo sapiens
36 GSK3B 2932
Two-hybrid Homo sapiens
37 RNF11 26994
Affinity Capture-MS Homo sapiens
38 MAP2 4133
Co-fractionation Homo sapiens
39 MTNR1B  
Two-hybrid Homo sapiens
40 KLF16  
Affinity Capture-MS Homo sapiens
41 HNRNPA0 10949
Co-fractionation Homo sapiens
42 PSMB4 5692
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
43 TRIM26 7726
Affinity Capture-MS Homo sapiens
44 PSMD4 5710
Reconstituted Complex Homo sapiens
Reconstituted Complex Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
45 FOXN2  
Affinity Capture-MS Homo sapiens
46 PSME1 5720
Co-fractionation Homo sapiens
47 PSMC1 5700
Affinity Capture-Western Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
48 PSMD14 10213
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
49 PSMD2 5708
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
50 VCP 7415
Co-fractionation Homo sapiens
51 ARRDC2  
Affinity Capture-MS Homo sapiens
52 NTRK1 4914
Affinity Capture-MS Homo sapiens
53 NOS2  
Affinity Capture-MS Homo sapiens
54 SMAD2 4087
Two-hybrid Homo sapiens
55 ANAPC4 29945
Affinity Capture-Western Homo sapiens
56 DHX9 1660
Co-fractionation Homo sapiens
57 CCDC74B  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
58 BAG3 9531
Affinity Capture-MS Homo sapiens
59 DYNC1I2 1781
Co-fractionation Homo sapiens
60 PSMA3 5684
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
61 HIST1H3A 8350
Cross-Linking-MS (XL-MS) Homo sapiens
62 TP53BP1 7158
Two-hybrid Homo sapiens
Affinity Capture-Western Homo sapiens
63 AMBRA1  
Affinity Capture-MS Homo sapiens
64 ARRDC4  
Affinity Capture-MS Homo sapiens
65 PSMD13 5719
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
66 TAL1  
Affinity Capture-MS Homo sapiens
67 KCMF1 56888
Co-fractionation Homo sapiens
68 ASPM 259266
Co-fractionation Homo sapiens
69 CD274 29126
Affinity Capture-MS Homo sapiens
70 BBS5 129880
Affinity Capture-MS Homo sapiens
71 PSMA2 5683
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
72 EGFR 1956
Negative Genetic Homo sapiens
73 PSMD7 5713
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
74 CDK2 1017
Affinity Capture-MS Homo sapiens
75 MAPK6  
Affinity Capture-MS Homo sapiens
76 UBLCP1  
Affinity Capture-MS Homo sapiens
77 BAG1 573
Affinity Capture-MS Homo sapiens
78 SMAD9  
Two-hybrid Homo sapiens
79 TXNL1 9352
Co-fractionation Homo sapiens
80 PSMC5 5705
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-Western Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
81 PSMB5 5693
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
82 DDRGK1 65992
Affinity Capture-MS Homo sapiens
83 KIAA0368 23392
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
84 PSME3 10197
Co-fractionation Homo sapiens
85 RNF185  
Affinity Capture-MS Homo sapiens
86 HEATR1 55127
Co-fractionation Homo sapiens
87 PUS1 80324
Co-fractionation Homo sapiens
88 PPFIA1 8500
Co-fractionation Homo sapiens
89 Psmd6 66413
Affinity Capture-MS Mus musculus
90 PSMB1 5689
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
91 PFDN5 5204
Affinity Capture-Western Homo sapiens
92 HUWE1 10075
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
93 PSMB3 5691
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
94 PSMB2 5690
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
95 DVL2 1856
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
96 PLEKHA4 57664
Affinity Capture-MS Homo sapiens
97 TUBG1 7283
Co-fractionation Homo sapiens
98 PSMB7 5695
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
99 RPS21 6227
Co-fractionation Homo sapiens
100 RPS12 6206
Co-fractionation Homo sapiens
101 SIL1 64374
Co-fractionation Homo sapiens
102 SHFM1 7979
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-Western Homo sapiens
103 PTPN2 5771
Affinity Capture-MS Homo sapiens
104 CCDC74A  
Affinity Capture-MS Homo sapiens
105 PSMA1 5682
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
106 UFL1 23376
Affinity Capture-MS Homo sapiens
107 PSMA5 5686
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
108 PSMA7 5688
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
109 RPS8 6202
Co-fractionation Homo sapiens
110 MAF  
Affinity Capture-MS Homo sapiens
111 KRAS 3845
Negative Genetic Homo sapiens
112 ADRM1 11047
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
113 C9orf72  
Affinity Capture-MS Homo sapiens
114 TMEM31  
Affinity Capture-MS Homo sapiens
115 PSMD1 5707
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
116 PSMC4 5704
Affinity Capture-Western Homo sapiens
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
117 PTCH1  
Affinity Capture-MS Homo sapiens
118 RPA3 6119
Proximity Label-MS Homo sapiens
119 DYNC1LI1 51143
Co-fractionation Homo sapiens
120 EP300 2033
Affinity Capture-MS Homo sapiens
121 PSMD3 5709
Affinity Capture-Western Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Co-fractionation Homo sapiens
Affinity Capture-MS Homo sapiens
Cross-Linking-MS (XL-MS) Homo sapiens
Cross-Linking-MS (XL-MS) Homo sapiens
122 INTU  
Affinity Capture-MS Homo sapiens
View the network image/svg+xml
 Pathways in which PSMD8 is involved
PathwayEvidenceSource
ABC transporter disorders TAS Reactome
ABC-family proteins mediated transport TAS Reactome
Activation of APC/C and APC/C:Cdc20 mediated degradation of mitotic proteins TAS Reactome
Activation of NF-kappaB in B cells TAS Reactome
Adaptive Immune System IEA Reactome
Adaptive Immune System TAS Reactome
Antigen processing-Cross presentation IEA Reactome
Antigen processing-Cross presentation TAS Reactome
Antigen processing: Ubiquitination & Proteasome degradation TAS Reactome
APC/C-mediated degradation of cell cycle proteins TAS Reactome
APC/C:Cdc20 mediated degradation of mitotic proteins TAS Reactome
APC/C:Cdc20 mediated degradation of Securin TAS Reactome
APC/C:Cdh1 mediated degradation of Cdc20 and other APC/C:Cdh1 targeted proteins in late mitosis/early G1 TAS Reactome
APC:Cdc20 mediated degradation of cell cycle proteins prior to satisfation of the cell cycle checkpoint TAS Reactome
Apoptosis IEA Reactome
Assembly of the pre-replicative complex TAS Reactome
Asymmetric localization of PCP proteins TAS Reactome
AUF1 (hnRNP D0) binds and destabilizes mRNA TAS Reactome
Autodegradation of Cdh1 by Cdh1:APC/C TAS Reactome
Autodegradation of the E3 ubiquitin ligase COP1 TAS Reactome
Axon guidance IEA Reactome
Beta-catenin independent WNT signaling TAS Reactome
C-type lectin receptors (CLRs) TAS Reactome
Cdc20:Phospho-APC/C mediated degradation of Cyclin A TAS Reactome
CDK-mediated phosphorylation and removal of Cdc6 TAS Reactome
Cell Cycle TAS Reactome
Cell Cycle Checkpoints TAS Reactome
Cell Cycle, Mitotic TAS Reactome
Cellular response to chemical stress TAS Reactome
Cellular response to hypoxia TAS Reactome
Cellular responses to stimuli TAS Reactome
Cellular responses to stress TAS Reactome
Class I MHC mediated antigen processing & presentation IEA Reactome
Class I MHC mediated antigen processing & presentation TAS Reactome
CLEC7A (Dectin-1) signaling TAS Reactome
Cross-presentation of soluble exogenous antigens (endosomes) TAS Reactome
Cyclin A:Cdk2-associated events at S phase entry TAS Reactome
Cyclin E associated events during G1/S transition TAS Reactome
Cytokine Signaling in Immune system TAS Reactome
Dectin-1 mediated noncanonical NF-kB signaling TAS Reactome
Defective CFTR causes cystic fibrosis TAS Reactome
Degradation of AXIN TAS Reactome
Degradation of beta-catenin by the destruction complex TAS Reactome
Degradation of DVL TAS Reactome
Degradation of GLI1 by the proteasome TAS Reactome
Degradation of GLI2 by the proteasome IEA Reactome
Deubiquitination TAS Reactome
Developmental Biology IEA Reactome
Disease TAS Reactome
Diseases of signal transduction by growth factor receptors and second messengers TAS Reactome
Disorders of transmembrane transporters TAS Reactome
DNA Replication TAS Reactome
DNA Replication Pre-Initiation TAS Reactome
Downstream signaling events of B Cell Receptor (BCR) TAS Reactome
Downstream TCR signaling TAS Reactome
ER-Phagosome pathway IEA Reactome
FBXL7 down-regulates AURKA during mitotic entry and in early mitosis TAS Reactome
Fc epsilon receptor (FCERI) signaling TAS Reactome
FCERI mediated NF-kB activation TAS Reactome
Formation of paraxial mesoderm IEA Reactome
G1/S DNA Damage Checkpoints TAS Reactome
G1/S Transition TAS Reactome
G2/M Checkpoints TAS Reactome
G2/M Transition TAS Reactome
Gastrulation IEA Reactome
Gene expression (Transcription) TAS Reactome
Gene expression (Transcription) IEA Reactome
Generic Transcription Pathway TAS Reactome
Generic Transcription Pathway IEA Reactome
GLI3 is processed to GLI3R by the proteasome TAS Reactome
GSK3B and BTRC:CUL1-mediated-degradation of NFE2L2 TAS Reactome
Hedgehog 'off' state IEA Reactome
Hedgehog 'off' state TAS Reactome
Hedgehog 'on' state TAS Reactome
Hedgehog ligand biogenesis TAS Reactome
Hh mutants abrogate ligand secretion TAS Reactome
Hh mutants are degraded by ERAD TAS Reactome
HIV Infection TAS Reactome
Host Interactions of HIV factors TAS Reactome
Immune System IEA Reactome
Immune System TAS Reactome
Infectious disease TAS Reactome
Innate Immune System TAS Reactome
Interleukin-1 family signaling TAS Reactome
Interleukin-1 signaling TAS Reactome
Intracellular signaling by second messengers TAS Reactome
KEAP1-NFE2L2 pathway TAS Reactome
M Phase TAS Reactome
MAPK family signaling cascades TAS Reactome
MAPK1/MAPK3 signaling TAS Reactome
MAPK6/MAPK4 signaling TAS Reactome
Metabolism TAS Reactome
Metabolism of amino acids and derivatives TAS Reactome
Metabolism of polyamines TAS Reactome
Metabolism of proteins TAS Reactome
Metabolism of proteins IEA Reactome
Metabolism of RNA TAS Reactome
Mitotic Anaphase TAS Reactome
Mitotic G1 phase and G1/S transition TAS Reactome
Mitotic G2-G2/M phases TAS Reactome
Mitotic Metaphase and Anaphase TAS Reactome
Neddylation TAS Reactome
Negative regulation of NOTCH4 signaling IEA Reactome
Nervous system development IEA Reactome
NIK-->noncanonical NF-kB signaling TAS Reactome
Nuclear events mediated by NFE2L2 TAS Reactome
Orc1 removal from chromatin TAS Reactome
Oxygen-dependent proline hydroxylation of Hypoxia-inducible Factor Alpha TAS Reactome
p53-Dependent G1 DNA Damage Response TAS Reactome
p53-Dependent G1/S DNA damage checkpoint TAS Reactome
p53-Independent DNA Damage Response TAS Reactome
p53-Independent G1/S DNA damage checkpoint TAS Reactome
PCP/CE pathway TAS Reactome
PIP3 activates AKT signaling TAS Reactome
Post-translational protein modification TAS Reactome
Post-translational protein modification IEA Reactome
Programmed Cell Death IEA Reactome
Proteasome assembly TAS Reactome
Proteasome assembly IEA Reactome
PTEN Regulation TAS Reactome
RAF/MAP kinase cascade TAS Reactome
Regulation of activated PAK-2p34 by proteasome mediated degradation IEA Reactome
Regulation of APC/C activators between G1/S and early anaphase TAS Reactome
Regulation of Apoptosis IEA Reactome
Regulation of expression of SLITs and ROBOs IEA Reactome
Regulation of mitotic cell cycle TAS Reactome
Regulation of mRNA stability by proteins that bind AU-rich elements TAS Reactome
Regulation of ornithine decarboxylase (ODC) TAS Reactome
Regulation of PTEN stability and activity TAS Reactome
Regulation of RAS by GAPs TAS Reactome
Regulation of RUNX2 expression and activity IEA Reactome
Regulation of RUNX2 expression and activity TAS Reactome
Regulation of RUNX3 expression and activity TAS Reactome
RNA Polymerase II Transcription TAS Reactome
RNA Polymerase II Transcription IEA Reactome
RUNX1 regulates transcription of genes involved in differentiation of HSCs TAS Reactome
S Phase TAS Reactome
SCF(Skp2)-mediated degradation of p27/p21 TAS Reactome
SCF-beta-TrCP mediated degradation of Emi1 TAS Reactome
Separation of Sister Chromatids TAS Reactome
Signal Transduction TAS Reactome
Signal Transduction IEA Reactome
Signaling by Hedgehog TAS Reactome
Signaling by Hedgehog IEA Reactome
Signaling by Interleukins TAS Reactome
Signaling by NOTCH IEA Reactome
Signaling by NOTCH4 IEA Reactome
Signaling by ROBO receptors IEA Reactome
Signaling by the B Cell Receptor (BCR) TAS Reactome
Signaling by WNT TAS Reactome
Somitogenesis IEA Reactome
Stabilization of p53 TAS Reactome
Switching of origins to a post-replicative state TAS Reactome
Synthesis of DNA TAS Reactome
TCF dependent signaling in response to WNT TAS Reactome
TCR signaling TAS Reactome
The role of GTSE1 in G2/M progression after G2 checkpoint TAS Reactome
TNFR2 non-canonical NF-kB pathway TAS Reactome
Transcriptional regulation by RUNX1 TAS Reactome
Transcriptional regulation by RUNX2 IEA Reactome
Transcriptional regulation by RUNX2 TAS Reactome
Transcriptional regulation by RUNX3 TAS Reactome
Transport of small molecules TAS Reactome
Ub-specific processing proteases TAS Reactome
Ubiquitin Mediated Degradation of Phosphorylated Cdc25A TAS Reactome
Ubiquitin-dependent degradation of Cyclin D TAS Reactome
UCH proteinases TAS Reactome
Vif-mediated degradation of APOBEC3G TAS Reactome
Viral Infection Pathways TAS Reactome
Vpu mediated degradation of CD4 TAS Reactome





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