Gene description for LTF
Gene name lactotransferrin
Gene symbol LTF
Other names/aliases GIG12
HEL110
HLF2
LF
Species Homo sapiens
 Database cross references - LTF
ExoCarta ExoCarta_4057
Vesiclepedia VP_4057
Entrez Gene 4057
HGNC 6720
MIM 150210
UniProt P02788  
 LTF identified in sEVs derived from the following tissue/cell type
Breast milk 17641064    
Breast milk 17641064    
Chondrocytes 35931686    
Chondrocytes 35931686    
Chondrocytes 35931686    
Chondrocytes 35931686    
Hepatocellular carcinoma cells 26054723    
Hepatocellular carcinoma cells 26054723    
Hepatocytes 26054723    
Keratinocytes 19530224    
Keratinocytes 19530224    
Liver cancer cells 25265333    
Liver cancer cells 25265333    
Liver cancer cells 25265333    
Melanoma cells 25950383    
Melanoma cells 25950383    
Melanoma cells 25950383    
Melanoma cells 25950383    
Melanoma cells 25950383    
Melanoma cells 25950383    
Melanoma cells 25950383    
Mesenchymal stem cells Unpublished / Not applicable
Mesenchymal stem cells 36408942    
Ovarian cancer cells 23333927    
Ovarian cancer cells 23333927    
Platelets 25332113    
Platelets 25332113    
Platelets 25332113    
Prostate cancer cells 22723089    
Prostate cancer cells 25844599    
Prostate cancer cells 25844599    
Saliva 19199708    
Thymus 23844026    
 Gene ontology annotations for LTF
Molecular Function
    lipopolysaccharide binding GO:0001530 IDA
    lipopolysaccharide binding GO:0001530 IMP
    DNA binding GO:0003677 IEA
    serine-type endopeptidase activity GO:0004252 IEA
    cysteine-type endopeptidase inhibitor activity GO:0004869 IDA
    iron ion binding GO:0005506 IDA
    protein binding GO:0005515 IPI
    heparin binding GO:0008201 IDA
    protein serine/threonine kinase activator activity GO:0043539 IDA
    membrane destabilizing activity GO:0140912 IMP
Biological Process
    ossification GO:0001503 IEA
    regulation of cytokine production GO:0001817 IDA
    innate immune response in mucosa GO:0002227 IDA
    proteolysis GO:0006508 IEA
    iron ion transport GO:0006826 IBA
    humoral immune response GO:0006959 TAS
    antibacterial humoral response GO:0019731 IBA
    antibacterial humoral response GO:0019731 IDA
    antifungal humoral response GO:0019732 IDA
    killing of cells of another organism GO:0031640 IDA
    killing of cells of another organism GO:0031640 IMP
    negative regulation of lipopolysaccharide-mediated signaling pathway GO:0031665 IDA
    regulation of tumor necrosis factor production GO:0032680 IDA
    negative regulation of ATP-dependent activity GO:0032780 IMP
    positive regulation of osteoblast proliferation GO:0033690 IDA
    positive regulation of toll-like receptor 4 signaling pathway GO:0034145 IMP
    negative regulation of apoptotic process GO:0043066 ISS
    positive regulation of canonical NF-kappaB signal transduction GO:0043123 IDA
    negative regulation by host of viral process GO:0044793 IMP
    negative regulation of viral genome replication GO:0045071 IMP
    innate immune response GO:0045087 IMP
    positive regulation of osteoblast differentiation GO:0045669 IDA
    negative regulation of membrane potential GO:0045837 IMP
    negative regulation of viral process GO:0048525 IMP
    defense response to Gram-negative bacterium GO:0050829 IMP
    defense response to Gram-positive bacterium GO:0050830 IMP
    positive regulation of NF-kappaB transcription factor activity GO:0051092 IDA
    cytolysis by host of symbiont cells GO:0051838 IMP
    bone morphogenesis GO:0060349 IDA
    antimicrobial humoral immune response mediated by antimicrobial peptide GO:0061844 IMP
    positive regulation of protein serine/threonine kinase activity GO:0071902 IDA
    positive regulation of bone mineralization involved in bone maturation GO:1900159 ISS
    negative regulation of single-species biofilm formation in or on host organism GO:1900229 IDA
    positive regulation of chondrocyte proliferation GO:1902732 IDA
    negative regulation of cysteine-type endopeptidase activity GO:2000117 IDA
    negative regulation of tumor necrosis factor (ligand) superfamily member 11 production GO:2000308 ISS
    negative regulation of osteoclast development GO:2001205 ISS
Subcellular Localization
    extracellular region GO:0005576 TAS
    extracellular space GO:0005615 HDA
    extracellular space GO:0005615 IBA
    extracellular space GO:0005615 IDA
    nucleus GO:0005634 HDA
    cytoplasm GO:0005737 IMP
    early endosome GO:0005769 IBA
    plasma membrane GO:0005886 IBA
    cell surface GO:0009986 IDA
    secretory granule GO:0030141 IDA
    protein-containing complex GO:0032991 IDA
    specific granule lumen GO:0035580 TAS
    specific granule GO:0042581 IDA
    recycling endosome GO:0055037 IBA
    extracellular exosome GO:0070062 HDA
    phagocytic vesicle lumen GO:0097013 TAS
    tertiary granule lumen GO:1904724 TAS
 Experiment description of studies that identified LTF in sEVs
1
Experiment ID 46
MISEV standards
EM|IEM
Biophysical techniques
HSC70|CD63|MHCII|CD81|CD86
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 17641064    
Organism Homo sapiens
Experiment description Exosomes with immune modulatory features are present in human breast milk.
Authors "Admyre C, Johansson SM, Qazi KR, Filen JJ, Lahesmaa R, Norman M, Neve EP, Scheynius A, Gabrielsson S"
Journal name JIMMU
Publication year 2007
Sample Breast milk
Sample name Breast milk - Colostrum
Isolation/purification methods Differential centrifugation
Filtration
Sucrose density gradient
Flotation density 1.10-1.18 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry [QSTAR]
Western blotting
Immunoelectron Microscopy
FACS
2
Experiment ID 48
MISEV standards
EM|IEM
Biophysical techniques
HSC70|CD63|CD86|MHCII
Enriched markers
CANX
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 17641064    
Organism Homo sapiens
Experiment description Exosomes with immune modulatory features are present in human breast milk.
Authors "Admyre C, Johansson SM, Qazi KR, Filen JJ, Lahesmaa R, Norman M, Neve EP, Scheynius A, Gabrielsson S"
Journal name JIMMU
Publication year 2007
Sample Breast milk
Sample name Breast milk - Mature milk
Isolation/purification methods Differential centrifugation
Filtration
Sucrose density gradient
Flotation density 1.10-1.18 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry [QSTAR]
Western blotting
Immunoelectron Microscopy
FACS
3
Experiment ID 494
MISEV standards
EM
Biophysical techniques
CD9|CD81|CD151|CD63|CD82|FLOT1|FLOT2|GAPDH|LAMP1|LAMP2|SDCBP|TFRC|TSG101
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 Osteoarthritic cartilage
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 496
MISEV standards
Biophysical techniques
CD9|CD151|CD63|CD81|CD82|FLOT1|FLOT2|GAPDH|LAMP1|LAMP2|SDCBP|TFRC|TSG101
Enriched markers
Negative markers
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 Healthy cartilage
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 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
6
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
7
Experiment ID 235
MISEV standards
EM
Biophysical techniques
TSG101|Alix|HSC70|GAPDH
Enriched markers
HSP90B1
Negative markers
qNano
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 26054723    
Organism Homo sapiens
Experiment description Hepatocellular carcinoma-derived exosomes promote motility of immortalized hepatocyte through transfer of oncogenic proteins and RNAs
Authors "He M, Qin H, Poon TC, Sze SC, Ding X, Co NN, Ngai SM, Chan TF, Wong N"
Journal name Carcinogenesis
Publication year 2015
Sample Hepatocellular carcinoma cells
Sample name HKCI-8
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.19 g/mL
Molecules identified in the study Protein
RNA
Methods used in the study Western blotting
Mass spectrometry
RT-PCR
RNA Sequencing
8
Experiment ID 236
MISEV standards
EM
Biophysical techniques
TSG101|Alix|HSC70|GAPDH
Enriched markers
HSP90B1
Negative markers
qNano
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 26054723    
Organism Homo sapiens
Experiment description Hepatocellular carcinoma-derived exosomes promote motility of immortalized hepatocyte through transfer of oncogenic proteins and RNAs
Authors "He M, Qin H, Poon TC, Sze SC, Ding X, Co NN, Ngai SM, Chan TF, Wong N"
Journal name Carcinogenesis
Publication year 2015
Sample Hepatocellular carcinoma cells
Sample name MHCC97L
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.19 g/mL
Molecules identified in the study Protein
RNA
Methods used in the study Western blotting
Mass spectrometry
RT-PCR
RNA Sequencing
9
Experiment ID 237
MISEV standards
EM
Biophysical techniques
TSG101|Alix|HSC70|GAPDH
Enriched markers
HSP90B1
Negative markers
qNano
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 26054723    
Organism Homo sapiens
Experiment description Hepatocellular carcinoma-derived exosomes promote motility of immortalized hepatocyte through transfer of oncogenic proteins and RNAs
Authors "He M, Qin H, Poon TC, Sze SC, Ding X, Co NN, Ngai SM, Chan TF, Wong N"
Journal name Carcinogenesis
Publication year 2015
Sample Hepatocytes
Sample name MIHA
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.19 g/mL
Molecules identified in the study Protein
RNA
Methods used in the study Western blotting
Mass spectrometry
RNA Sequencing
10
Experiment ID 189
MISEV standards
EM
Biophysical techniques
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 19530224    
Organism Homo sapiens
Experiment description Profile of exosomes related proteins released by differentiated and undifferentiated human keratinocytes.
Authors "Chavez-Muñoz C, Kilani RT, Ghahary A."
Journal name J Cell Physiol
Publication year 2009
Sample Keratinocytes
Sample name Keratinocytes - Differentiated
Isolation/purification methods Differential centrifugation
Filtration
Sucrose cushion
Filtration
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
11
Experiment ID 190
MISEV standards
EM
Biophysical techniques
HSC70
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 19530224    
Organism Homo sapiens
Experiment description Profile of exosomes related proteins released by differentiated and undifferentiated human keratinocytes.
Authors "Chavez-Muñoz C, Kilani RT, Ghahary A."
Journal name J Cell Physiol
Publication year 2009
Sample Keratinocytes
Sample name Keratinocytes - Undifferentiated
Isolation/purification methods Differential centrifugation
Filtration
Sucrose cushion
Filtration
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
12
Experiment ID 266
MISEV standards
Biophysical techniques
TSG101|Alix
Enriched markers
CANX|HSP90B1
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25265333    
Organism Homo sapiens
Experiment description Quantitative Proteomic Analysis of Exosome Protein Content Changes Induced by Hepatitis B Virus in Huh-7 Cells Using SILAC Labeling and LC-MS/MS
Authors "Zhao X, Wu Y, Duan J, Ma Y, Shen Z, Wei L, Cui X, Zhang J, Xie Y, Liu J"
Journal name J Proteome Res
Publication year 2014
Sample Liver cancer cells
Sample name Huh-7 - Wild type
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
13
Experiment ID 267
MISEV standards
Biophysical techniques
TSG101|Alix
Enriched markers
CANX|HSP90B1
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25265333    
Organism Homo sapiens
Experiment description Quantitative Proteomic Analysis of Exosome Protein Content Changes Induced by Hepatitis B Virus in Huh-7 Cells Using SILAC Labeling and LC-MS/MS
Authors "Zhao X, Wu Y, Duan J, Ma Y, Shen Z, Wei L, Cui X, Zhang J, Xie Y, Liu J"
Journal name J Proteome Res
Publication year 2014
Sample Liver cancer cells
Sample name Huh-7 - Transfected with HBx plasmids
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
14
Experiment ID 268
MISEV standards
Biophysical techniques
TSG101|Alix
Enriched markers
CANX|HSP90B1
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25265333    
Organism Homo sapiens
Experiment description Quantitative Proteomic Analysis of Exosome Protein Content Changes Induced by Hepatitis B Virus in Huh-7 Cells Using SILAC Labeling and LC-MS/MS
Authors "Zhao X, Wu Y, Duan J, Ma Y, Shen Z, Wei L, Cui X, Zhang J, Xie Y, Liu J"
Journal name J Proteome Res
Publication year 2014
Sample Liver cancer cells
Sample name Huh-7 - Transfected with HBx-null HBV replicon plasmids
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
15
Experiment ID 254
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1|CD81
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name MNT-1
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
16
Experiment ID 255
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name G1
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
17
Experiment ID 256
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name 501mel
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
18
Experiment ID 257
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name Daju
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
19
Experiment ID 258
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1|CD81
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name SKMEL28
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
20
Experiment ID 259
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name A375M
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
21
Experiment ID 260
MISEV standards
EM
Biophysical techniques
TSG101|FLOT1|CD81
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25950383    
Organism Homo sapiens
Experiment description Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines
Authors "Lazar I, Clement E, Ducoux-Petit M, Denat L, Soldan V, Dauvillier S, Balor S4, Burlet-Schiltz O1, Larue L, Muller C Nieto L"
Journal name Pigment Cell Melanoma Res
Publication year 2015
Sample Melanoma cells
Sample name 1205Lu
Isolation/purification methods Differential centrifugation
Unltracentrifugation
Sucrose density gradient
Flotation density 1.13 - 1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Western blotting
Mass spectrometry
22
Experiment ID 126
MISEV standards
Biophysical techniques
GAPDH
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry [LTQ-FT Ultra]
PubMed ID Unpublished / Not applicable
Organism Homo sapiens
Experiment description Mesenchymal Stem Cell Exosomes: The Future MSC-based Therapy?
Authors "Ruenn Chai Lai, Ronne Wee Yeh Yeo, Soon Sim Tan, Bin Zhang, Yijun Yin, Newman Siu Kwan Sze, Andre Choo, and Sai Kiang Lim"
Journal name Mesenchymal Stem Cell Therapy
Publication year 2011
Sample Mesenchymal stem cells
Sample name huES9.E1
Isolation/purification methods HPLC
Flotation density -
Molecules identified in the study Protein
Methods used in the study Western blotting
Antobody array
Mass spectrometry
23
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
24
Experiment ID 211
MISEV standards
EM
Biophysical techniques
TSG101|Alix|EpCAM|TFRC
Enriched markers
cytochrome c|GOLGA2
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 23333927    
Organism Homo sapiens
Experiment description Characterization and proteomic analysis of ovarian cancer-derived exosomes.
Authors "Liang B, Peng P, Chen S, Li L, Zhang M, Cao D, Yang J, Li H, Gui T, Li X, Shen K."
Journal name J Proteomics
Publication year 2013
Sample Ovarian cancer cells
Sample name IGROV1
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.09-1.15 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
25
Experiment ID 212
MISEV standards
CEM
Biophysical techniques
TSG101|Alix|EpCAM|TFRC
Enriched markers
Cytochrome C|GOLGA2
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 23333927    
Organism Homo sapiens
Experiment description Characterization and proteomic analysis of ovarian cancer-derived exosomes.
Authors "Liang B, Peng P, Chen S, Li L, Zhang M, Cao D, Yang J, Li H, Gui T, Li X, Shen K."
Journal name J Proteomics
Publication year 2013
Sample Ovarian cancer cells
Sample name OVCAR-3
Isolation/purification methods Differential centrifugation
Ultracentrifugation
Sucrose density gradient
Flotation density 1.09-1.15 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
26
Experiment ID 231
MISEV standards
Biophysical techniques
Alix|CD63|CD9
Enriched markers
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25332113    
Organism Homo sapiens
Experiment description Lipidomic and proteomic characterization of platelet extracellular vesicle subfractions from senescent platelets
Authors "Pienimaeki-Roemer A, Kuhlmann K, Bottcher A, Konovalova T, Black A, Orso E, Liebisch G, Ahrens M, Eisenacher M, Meyer HE, Schmitz G."
Journal name Transfusion
Publication year 2015
Sample Platelets
Sample name PL-Exs - Rep 1
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Optiprep density gradient
Flotation density 1.12-1.15 g/mL
Molecules identified in the study Protein
Lipids
Methods used in the study Western blotting
Mass spectrometry
27
Experiment ID 232
MISEV standards
Biophysical techniques
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25332113    
Organism Homo sapiens
Experiment description Lipidomic and proteomic characterization of platelet extracellular vesicle subfractions from senescent platelets
Authors "Pienimaeki-Roemer A, Kuhlmann K, Bottcher A, Konovalova T, Black A, Orso E, Liebisch G, Ahrens M, Eisenacher M, Meyer HE, Schmitz G."
Journal name Transfusion
Publication year 2015
Sample Platelets
Sample name PL-Exs - Rep 2
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Optiprep density gradient
Flotation density 1.12-1.15 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
28
Experiment ID 233
MISEV standards
Biophysical techniques
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25332113    
Organism Homo sapiens
Experiment description Lipidomic and proteomic characterization of platelet extracellular vesicle subfractions from senescent platelets
Authors "Pienimaeki-Roemer A, Kuhlmann K, Bottcher A, Konovalova T, Black A, Orso E, Liebisch G, Ahrens M, Eisenacher M, Meyer HE, Schmitz G."
Journal name Transfusion
Publication year 2015
Sample Platelets
Sample name PL-Exs - Rep 3
Isolation/purification methods Differential centrifugation
Filtration
Ultracentrifugation
Optiprep density gradient
Flotation density 1.12-1.15 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
29
Experiment ID 136
MISEV standards
EM
Biophysical techniques
HSP70|HSP90|RAB5|CD9
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method
Mass spectrometry [QTOF]   
PubMed ID 22723089    
Organism Homo sapiens
Experiment description Prostate cancer cell derived exosomes
Authors "Hosseini-Beheshti E, Guns ES."
Journal name MCP
Publication year 2012
Sample Prostate cancer cells
Sample name PC3 - Rep 2
Isolation/purification methods Sucrose density gradient
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry [QTOF]
30
Experiment ID 275
MISEV standards
EM
Biophysical techniques
TSG101|Alix|RAB5A|CD9|CD82|CD63|CD81
Enriched markers
AIF
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25844599    
Organism Homo sapiens
Experiment description Molecular profiling of prostate cancer derived exosomes may reveal a predictive signature for response to docetaxel.
Authors "Kharaziha P, Chioureas D, Rutishauser D, Baltatzis G, Lennartsson L, Fonseca P, Azimi A, Hultenby K, Zubarev R, Ullen A, Yachnin J, Nilsson S, Panaretakis T."
Journal name Oncotarget
Publication year 2015
Sample Prostate cancer cells
Sample name DU145 - Docetaxel sensitive
Isolation/purification methods Filtration
Ultracentrifugation
Sucrose density gradient
Flotation density 1.12-1.19 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry/Flow cytometry/Western blotting
31
Experiment ID 274
MISEV standards
EM
Biophysical techniques
TSG101|Alix|RAB5A|CD9|CD82|CD63|CD81
Enriched markers
AIF
Negative markers
NTA
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 25844599    
Organism Homo sapiens
Experiment description Molecular profiling of prostate cancer derived exosomes may reveal a predictive signature for response to docetaxel.
Authors "Kharaziha P, Chioureas D, Rutishauser D, Baltatzis G, Lennartsson L, Fonseca P, Azimi A, Hultenby K, Zubarev R, Ullen A, Yachnin J, Nilsson S, Panaretakis T."
Journal name Oncotarget
Publication year 2015
Sample Prostate cancer cells
Sample name DU145 - Docetaxel resistant
Isolation/purification methods Filtration
Ultracentrifugation
Sucrose density gradient
Flotation density 1.13-1.18 g/mL
Molecules identified in the study Protein
Methods used in the study Mass spectrometry
Flow cytometry
Western blotting
32
Experiment ID 66
MISEV standards
IEM
Biophysical techniques
TSG101|Alix|CD63|CD81
Enriched markers
Negative markers
Particle analysis
Identified molecule protein
Identification method Mass spectrometry
PubMed ID 19199708    
Organism Homo sapiens
Experiment description Proteomic analysis of human parotid gland exosomes by multidimensional protein identification technology (MudPIT).
Authors "Gonzalez-Begne M, Lu B, Han X, Hagen FK, Hand AR, Melvin JE, Yates JR"
Journal name JPR
Publication year 2009
Sample Saliva
Sample name Saliva
Isolation/purification methods Differential centrifugation
Flotation density -
Molecules identified in the study Protein
Methods used in the study Mass spectrometry [LTQ]
Western blotting
Immunoelectron Microscopy
33
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 LTF
  Protein Interactor ExoCarta ID Identification method PubMed Species
1 FCN1 2219
Affinity Capture-MS Homo sapiens
2 LYZ 4069
Reconstituted Complex Homo sapiens
3 PMS1  
Affinity Capture-MS Homo sapiens
4 DHRS12  
Affinity Capture-MS Homo sapiens
5 MPO 4353
Affinity Capture-MS Homo sapiens
6 UBC 7316
Reconstituted Complex Homo sapiens
7 EBF2  
Affinity Capture-MS Homo sapiens
8 CALM1 801
Reconstituted Complex Homo sapiens
9 FNDC5  
Affinity Capture-MS Homo sapiens
10 RHBDD1 84236
Affinity Capture-MS Homo sapiens
11 GSK3A 2931
Affinity Capture-MS Homo sapiens
12 USB1  
Affinity Capture-MS Homo sapiens
13 EFNA3  
Affinity Capture-MS Homo sapiens
14 PPCS 79717
Affinity Capture-MS Homo sapiens
15 B3GNT2 10678
Affinity Capture-MS Homo sapiens
16 GLRX 2745
Affinity Capture-MS Homo sapiens
17 EGFL8  
Affinity Capture-MS Homo sapiens
18 POLL  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
19 IQGAP1 8826
Cross-Linking-MS (XL-MS) Homo sapiens
20 OR13C3  
Affinity Capture-MS Homo sapiens
21 SFXN4  
Affinity Capture-MS Homo sapiens
22 TCEB3B  
Affinity Capture-MS Homo sapiens
23 Ikbip  
Affinity Capture-MS Mus musculus
24 Haus1  
Affinity Capture-MS Mus musculus
25 PRTN3 5657
Affinity Capture-MS Homo sapiens
26 SNX27 81609
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
27 LRRC17 10234
Affinity Capture-MS Homo sapiens
28 TWF1 5756
Affinity Capture-MS Homo sapiens
29 RCOR3  
Affinity Capture-MS Homo sapiens
30 GSK3B 2932
Affinity Capture-MS Homo sapiens
31 DDX19B 11269
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
32 PMEPA1 56937
Affinity Capture-MS Homo sapiens
33 PRAP1  
Affinity Capture-MS Homo sapiens
34 DDX31  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
35 GNG8  
Affinity Capture-MS Homo sapiens
36 Arhgap28  
Affinity Capture-MS Mus musculus
37 ERO1L 30001
Affinity Capture-MS Homo sapiens
38 PARK2  
Affinity Capture-MS Homo sapiens
39 CLU 1191
Affinity Capture-Western Homo sapiens
40 SPNS3  
Affinity Capture-MS Homo sapiens
41 OCRL 4952
Affinity Capture-MS Homo sapiens
42 GOLGA8A 23015
Affinity Capture-MS Homo sapiens
43 ITLN2  
Affinity Capture-MS Homo sapiens
44 SARAF  
Affinity Capture-MS Homo sapiens
45 ARHGAP11A  
Affinity Capture-MS Homo sapiens
46 S100A8 6279
Affinity Capture-MS Homo sapiens
47 LRRC8E 80131
Affinity Capture-MS Homo sapiens
48 SSUH2  
Affinity Capture-MS Homo sapiens
49 DDX39B 7919
Affinity Capture-MS Homo sapiens
50 GJB5  
Affinity Capture-MS Homo sapiens
51 CYLD  
Affinity Capture-MS Homo sapiens
52 PHF21B  
Affinity Capture-MS Homo sapiens
53 RNF40 9810
Affinity Capture-MS Homo sapiens
54 CD14 929
Reconstituted Complex Homo sapiens
55 FANCD2  
Affinity Capture-MS Homo sapiens
56 METTL14  
Affinity Capture-MS Homo sapiens
57 AGPAT1 10554
Affinity Capture-MS Homo sapiens
58 NTRK1 4914
Affinity Capture-MS Homo sapiens
59 SIRT7  
Affinity Capture-MS Homo sapiens
60 TMEM176B 28959
Affinity Capture-MS Homo sapiens
61 GALR3  
Affinity Capture-MS Homo sapiens
62 MAGEB4  
Affinity Capture-MS Homo sapiens
63 EPPIN  
Co-fractionation Homo sapiens
Far Western Homo sapiens
64 CP 1356
Reconstituted Complex Homo sapiens
65 ZNF250  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
66 DHX30 22907
Affinity Capture-MS Homo sapiens
67 SNF8 11267
Affinity Capture-MS Homo sapiens
68 SIRPG 55423
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
69 CCDC148  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
70 FRMD1  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
71 TMEM237 65062
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
72 FN3KRP 79672
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
73 CSNK2A2 1459
Affinity Capture-MS Homo sapiens
74 RIBC1  
Affinity Capture-MS Homo sapiens
75 HBM  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
76 ICE2  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
77 Dynll1 56455
Affinity Capture-MS Mus musculus
78 MAPK15  
Affinity Capture-MS Homo sapiens
79 MUC7 4589
Far Western Homo sapiens
80 SGK1  
Affinity Capture-MS Homo sapiens
81 PIGA  
Affinity Capture-MS Homo sapiens
82 DDX3X 1654
Affinity Capture-MS Homo sapiens
83 USP36  
Affinity Capture-MS Homo sapiens
84 TIMM10  
Affinity Capture-MS Homo sapiens
85 CDK15  
Affinity Capture-MS Homo sapiens
Affinity Capture-MS Homo sapiens
86 RASL11B  
Affinity Capture-MS Homo sapiens
87 S100A9 6280
Affinity Capture-MS Homo sapiens
88 FKBP14  
Affinity Capture-MS Homo sapiens
89 WWP2 11060
Affinity Capture-MS Homo sapiens
90 KDM1A 23028
Affinity Capture-MS Homo sapiens
91 TMEM257  
Affinity Capture-MS Homo sapiens
92 KLK10 5655
Affinity Capture-MS Homo sapiens
93 GOT1 2805
Affinity Capture-MS Homo sapiens
94 FOXN3 1112
Affinity Capture-MS Homo sapiens
95 METTL3  
Affinity Capture-MS Homo sapiens
96 STK11 6794
Affinity Capture-MS Homo sapiens
97 PRKX 5613
Affinity Capture-MS Homo sapiens
98 SMIM8  
Affinity Capture-MS Homo sapiens
99 APCDD1  
Affinity Capture-MS Homo sapiens
100 ATP11C 286410
Affinity Capture-MS Homo sapiens
101 CCR1  
Affinity Capture-MS Homo sapiens
102 CYP3A43  
Affinity Capture-MS Homo sapiens
103 RCOR1  
Affinity Capture-MS Homo sapiens
View the network image/svg+xml



Perform bioinformatics analysis of your extracellular vesicle data set using FunRich, a open access standalone tool. NEW UPDATED VERSION OF FunRich available for download (12/09/2016) from here