Protein detail

CD9

CD9 antigen (5H9 antigen) (Cell growth-inhibiting gene 2 protein) (Leukocyte antigen MIC3) (Motility-related protein) (MRP-1) (Tetraspanin-29) (Tspan-29) (p24) (CD antigen CD9)

Entry name
CD9
UniProt ID
EVMP confidence score
0.88
Supporting publications (n)
424
Transmembrane count
4
Protein classification
Cancer-related genesCD markersPlasma proteinsPredicted membrane proteinsTransporters
EVMP confidence score

Annotation confidence score; open for threshold definitions.

Extremely high >= 0.85High >= 0.70Medium >= 0.55Low >= 0.40
Basic Information13
Protein Names
CD9 antigen (5H9 antigen) (Cell growth-inhibiting gene 2 protein) (Leukocyte antigen MIC3) (Motility-related protein) (MRP-1) (Tetraspanin-29) (Tspan-29) (p24) (CD antigen CD9)
Protein Class (5)
Cancer-related genesCD markersPlasma proteinsPredicted membrane proteinsTransporters
Protein Function (3)
  • Cancer-related genes:Candidate cancer biomarkers
  • CD markers
  • Transporters:Accessory Factors Involved in Transport
Transmembrane
13..33; Helical; 56..76; Helical; 88..111; Helical; 196..221; Helical
Transmembrane Count
4
Entrez Gene Symbol
Gene Synonym (5)
BA2MIC3MRP-1P24TSPAN29
Gene Description
CD9 molecule
Chromosome
12
Position
6199715-6238271
Supporting publications (n)
424
EVMP confidence score
0.88
Fluorescence & Localization1
CD9 fluorescence
Function & Pathway7
Protein Function (3)
  • Cancer-related genes:Candidate cancer biomarkers
  • CD markers
  • Transporters:Accessory Factors Involved in Transport
Mediation Categories (4)
Adhesion and uptake mediationClinical-translation mediationFusion and delivery mediationImmune mediation
Relations & Evidence41

Ligand-Receptor Signaling (32)

32 records.

CategoryParentDatabaseTransmitterReceiverSecretedPlasma Membrane (Transmembrane)Plasma Membrane (Peripheral)
cell_adhesioncell_adhesionCellinkerYesYesYesNoNo
cell_adhesioncell_adhesionZhong2015YesYesYesNoNo
adhesionadhesionOmniPathYesYesYesNoNo
cell_adhesioncell_adhesionOmniPathYesYesYesNoNo
transmembranetransmembraneUniProt_locationNoNoYesNoNo
transmembranetransmembraneUniProt_topologyNoNoYesNoNo
transmembranetransmembraneUniProt_keywordNoNoYesNoNo
transmembranetransmembraneTopDBNoNoYesNoNo
transmembranetransmembraneLOCATENoNoYesNoNo
transmembranetransmembraneRamilowski_locationNoNoYesNoNo
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Isolation & Detection Technology (1)

1 record.

EV Isolation MethodDetection MethodNumber of ReferencesReferences
Differential UltracentrifugationSize Exclusion ChromatographyMass spectrometryWestern blotting23766754736849061
Sequence, Structure & Domains8

Sequences

Length
228
Mass
25,416
Sequence
MPVKGGTKCIKYLLFGFNFIFWLAGIAVLAIGLWLRFDSQTKSIFEQETNNNNSSFYTGVYILIGAGALMMLVGFLGCCGAVQESQCMLGLFFGFLLVIFAIEIAAAIWGYSHKDEVIKEVQEFYKDTYNKLKTKDEPQRETLKAIHYALNCCGLAGGVEQFISDICPKKDVLETFTVKSCPDAIKEVFDNKFHIIGAVGIGIAVVMIFGMIFSMILCCAIRRNREMV

3D Structural Models

Turn
154..156; 169..172
Helix
5..37; 41..45; 55..82; 86..111; 114..133; 137..139; 140..150; 161..166; 173..175; 181..190; 193..222
3D Structure
X-ray crystallography (5)

Domain & Motif Annotations

Protein Families
Tetraspanin (TM4SF) family
Sequence Similarities
Belongs to the tetraspanin (TM4SF) family.
Clinical Relevance6
Supporting Publications409
PMIDTitleAbstract
10545503Molecular characterization of dendritic cell-derived exosomes. Selective accumulation of the heat shock protein hsc73.Exosomes contain several cytosolic proteins (including annexin II, heat shock cognate protein hsc73, and heteromeric G protein Gi2alpha), as well as different integral or peripherally associated membrane proteins (major histocompatibility complex class II, Mac-1 integrin, CD9, milk fat globule-EGF-factor VIII [MFG-E8]). MFG-E8, the major exosomal component, binds integrins expressed by DCs and macrophages, suggesting that it may be involved in exosome targeting to these professional antigen-presenting cells.
14633944Intestinal epithelial exosomes carry MHC class II/peptides able to inform the immune system in mice.A33 antigen, an Ig-like molecule highly specific for intestinal epithelial cells, was enriched in exosomes and was also found in mice mesenteric lymph nodes, suggesting exosome migration towards the gut associated lymphoid tissues. CONCLUSIONS: Epithelial exosomes are antigen presenting vesicles bearing MHC class II/peptide complexes that prime for an immunogenic rather than tolerogenic response in the context of a systemic challenge. In contrast, exosomes obtained after incubation with IFN-gamma (EXO-hOVA-IFN), bearing abundant MHC class II/OVA complexes, induced a specific humoral immune response. RESULTS: MODE K epithelial exosomes displayed major histocompatibility complex (MHC) class I and class II (upregulated by IFN-gamma) molecules and tetraspan proteins (CD9, CD81, CD82) potentially involved in the binding to target cells.
15284116Endocytosis, intracellular sorting, and processing of exosomes by dendritic cells.Targeting of exosomes to DCs is mediated via milk fat globule (MFG)-E8/lactadherin, CD11a, CD54, phosphatidylserine, and the tetraspanins CD9 and CD81 on the exosome and alpha(v)/beta(3) integrin, and CD11a and CD54 on the DCs.
16027013Human small intestinal epithelial cells constitutively express the key elements for antigen processing and the production of exosomes.Interestingly, in the baso-latereral area of the IEC, only MHC II, MHC I, Lamp 1, CD68, CD63 and A33 were found and also here with vesicular staining pattern which matches the molecules previously found on exosomes derived professional APCs and human IEC lines. The IEC also contains MHC II rich multivesicular compartments and has been shown to produce exosomes.
16407131Immature dendritic cell-derived exosomes can mediate HIV-1 trans infection.Furthermore, some of the endocytosed virus particles were constitutively released into the extracellular milieu in association with HLA-DR1(+), CD1b(+), CD9(+), and CD63(+) vesicles (exosomes) and could initiate productive infections of CD4(+) target cells.
17407154The transferrin receptor and the tetraspanin web molecules CD9, CD81, and CD9P-1 are differentially sorted into exosomes after TPA treatment of K562 cells.However, CD9P-1 could be targeted to exosomes in the absence of CD81 and of another tetraspanin, CD9. TPA increased targeting of CD81 and CD9P-1 into exosomes but strongly reduced the localization of the TfR in these vesicles. The targeting of CD9 into exosomes did not require palmitoylation of the protein. Using this model we have shown that a fraction of CD81 and CD9P-1 in exosomes comes from a surface pool and that these molecules remain associated in exosomes.
17484880T84-intestinal epithelial exosomes bear MHC class II/peptide complexes potentiating antigen presentation by dendritic cells.RESULTS: T84-derived exosomes, enriched in CD9, CD81, CD82, and A33 antigen, were capable of binding specifically human serum albumin (HSA) 64-76 peptide on HLA-DR4 molecules and of interacting preferentially with DCs.
17894858Platelet-derived exosomes induce endothelial cell apoptosis through peroxynitrite generation: experimental evidence for a novel mechanism of septic vascular dysfunction.Endothelial cells exposed to the exosomes underwent apoptosis and caspase-3 activation, which were inhibited by NO synthase inhibitors or by a superoxide dismutase mimetic and totally blocked by urate (1 mM), suggesting a role for the peroxynitrite radical. RESULTS: Size, morphology, high exposure of the tetraspanins CD9, CD63, and CD81, together with low phosphatidylserine, showed that platelets exposed to NONOate and LPS, but not to TNF-alpha or thrombin, generate microparticles similar to those recovered from septic patients, and characterize them as exosomes.
18802920Secretion of active membrane type 1 matrix metalloproteinase (MMP-14) into extracellular space in microvesicular exosomes.The exosomes were able to activate pro-MMP-2 and degrade type 1 collagen and gelatin, suggesting that the exosomal MT1-MMP was functionally active. The isolated exosomes were identified by their vesicular structure in electron microscopy and by exosomal marker proteins CD9 and tumor susceptibility gene (TSG101). The targeting of MT1-MMP in exosomes represents a novel mechanism for cancer cells to secrete membrane type metalloproteolytic activity into the extracellular space. Using cultured human fibrosarcoma (HT-1080) and melanoma (G361) cells we provide evidence that both the full-length 60 kDa and the proteolytically processed 43 kDa forms of MT1-MMP are secreted in exosomes. We hypothesized that some of the endosomal MT1-MMP could be directed to exosomes for extracellular release.
19810033ExoCarta: A compendium of exosomal proteins and RNA.Researchers rely on the identification of certain exosomal marker proteins including Alix, CD9 and CD63 to confirm the presence of exosomes in their preparations.
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