Protein detail

ZSWM8

Zinc finger SWIM domain-containing protein 8

Entry name
ZSWM8
UniProt ID
EVMP confidence score
0.38
Supporting publications (n)
1
Transmembrane count
Protein classification
Predicted intracellular proteins
EVMP confidence score

Annotation confidence score; open for threshold definitions.

Extremely high >= 0.85High >= 0.70Medium >= 0.55Low >= 0.40
Basic Information11
Protein Names
Zinc finger SWIM domain-containing protein 8
Protein Class
Predicted intracellular proteins
Protein Function
Predicted intracellular proteins
Entrez Gene Symbol
Gene Synonym (2)
4832404P21RikKIAA0913
Gene Description
Zinc finger SWIM-type containing 8
Chromosome
10
Position
73785606-73801797
Supporting publications (n)
1
EVMP confidence score
0.38
Fluorescence & Localization1
Cell SpecificLactotrophs
Function & Pathway7
Relations & Evidence13

Ligand-Receptor Signaling (4)

4 records.

CategoryParentDatabaseTransmitterReceiverSecretedPlasma Membrane (Transmembrane)Plasma Membrane (Peripheral)
intracellularintracellularComPPINoNoNoNoNo
intracellularintracellularGO_IntercellNoNoNoNoNo
intracellularintracellularUniProt_locationNoNoNoNoNo
intracellularintracellularOmniPathNoNoNoNoNo

Isolation & Detection Technology (1)

1 record.

EV Isolation MethodDetection MethodNumber of ReferencesReferences
Differential UltracentrifugationDensity Gradient CentrifugationUltrafiltration / Tangential Flow FiltrationSize Exclusion ChromatographyPolymer PrecipitationMass spectrometry83119696832489530377869183481790628986585327823172789410438321535
Sequence, Structure & Domains10

Sequences

Length
1,837
Mass
197,297
Sequence
MELMFAEWEDGERFSFEDSDRFEEDSLCSFISEAESLCQNWRGWRKQSAGPNSPTGGGGGGGSGGTRMRDGLVIPLVELSAKQVAFHIPFEVVEKVYPPVPEQLQLRIAFWSFPENEEDIRLYSCLANGSADEFQRGDQLFRMRAVKDPLQIGFHLSATVVPPQMVPPKGAYNVAVMFDRCRVTSCSCTCGAGAKWCTHVVALCLFRIHNASAVCLRAPVSESLSRLQRDQLQKFAQYLISELPQQILPTAQRLLDELLSSQSTAINTVCGAPDPTAGPSASDQSTWYLDESTLTDNIKKTLHKFCGPSPVVFSDVNSMYLSSTEPPAAAEWACLLRPLRGREPEGVWNLLSIVREMFKRRDSNAAPLLEILTDQCLTYEQITGWWYSVRTSASHSSASGHTGRSNGQSEVAAHACASMCDEMVTLWRLAVLDPALSPQRRRELCTQLRQWQLKVIENVKRGQHKKTLERLFPGFRPAVEACYFNWEEAYPLPGVTYSGTDRKLALCWARALPSRPGASRSGGLEESRDRPRPLPTEPAVRPKEPGTKRKGLGEGVPSSQRGPRRLSAEGGDKALHKMGPGGGKAKALGGAGSGSKGSAGGGSKRRLSSEDSSLEPDLAEMSLDDSSLALGAEASTFGGFPESPPPCPLHGGSRGPSTFLPEPPDTYEEDGGVYFSEGPEPPTASVGPPGLLPGDVCTQDDLPSTDESGNGLPKTKEAAPAVGEEDDDYQAYYLNAQDGAGGEEEKAEGGAGEEHDLFAGLKPLEQESRMEVLFACAEALHAHGYSSEASRLTVELAQDLLANPPDLKVEPPPAKGKKNKVSTSRQTWVATNTLSKAAFLLTVLSERPEHHNLAFRVGMFALELQRPPASTKALEVKLAYQESEVAALLKKIPLGPSEMSTMRCRAEELREGTLCDYRPVLPLMLASFIFDVLCAPGSRPPSRNWNSETPGDEELGFEAAVAALGMKTTVSEAEHPLLCEGTRREKGDLALALMITYKDDQAKLKKILDKLLDRESQTHKPQTLSSFYSSSRPTTASQRSPSKHGGPSAPGALQPLTSGSAGPAQPGSVAGAGPGPTEGFTEKNVPESSPHSPCEGLPSEAALTPRPEGKVPSRLALGSRGGYNGRGWGSPGRPKKKHTGMASIDSSAPETTSDSSPTLSRRPLRGGWAPTSWGRGQDSDSISSSSSDSLGSSSSSGSRRASASGGARAKTVEVGRYKGRRPESHAPHVPNQPSEAAAHFYFELAKTVLIKAGGNSSTSIFTHPSSSGGHQGPHRNLHLCAFEIGLYALGLHNFVSPNWLSRTYSSHVSWITGQAMEIGSAALTILVECWDGHLTPPEVASLADRASRARDSNMVRAAAELALSCLPHAHALNPNEIQRALVQCKEQDNLMLEKACMAVEEAAKGGGVYPEVLFEVAHQWFWLYEQTAGGSSTAREGATSCSASGIRAGGEAGRGMPEGRGGPGTEPVTVAAAAVTAAATVVPVISVGSSLYPGPGLGHGHSPGLHPYTALQPHLPCSPQYLTHPAHPAHPMPHMPRPAVFPVPSSAYPQGVHPAFLGAQYPYSVTPPSLAATAVSFPVPSMAPITVHPYHTEPGLPLPTSVACELWGQGTVSSVHPASTFPAIQGASLPALTTQPSPLVSGGFPPPEEETHSQPVNPHSLHHLHAAYRVGMLALEMLGRRAHNDHPNNFSRSPPYTDDVKWLLGLAAKLGVNYVHQFCVGAAKGVLSPFVLQEIVMETLQRLSPAHAHNHLRAPAFHQLVQRCQQAYMQYIHHRLIHLTPADYDDFVNAIRSARSAFCLTPMGMMQFNDILQNLKRSKQTKELWQRVSLEMATFSP
Alternative Products
Event=Alternative splicing; Named isoforms=5; Name=1; IsoId=A7E2V4-1; Sequence=Displayed; Name=2; IsoId=A7E2V4-2; Sequence=VSP_029590, VSP_029591; Name=3; IsoId=A7E2V4-3; Sequence=VSP_029586, VSP_029587, VSP_029590; Name=4; IsoId=A7E2V4-4; Sequence=VSP_029586; Name=5; IsoId=A7E2V4-5; Sequence=VSP_029590
Alternative Sequence
936; P -> PVVSPT (in isoform 3 and isoform 4); 1006; K -> KVTASVFQ (in isoform 3); 1604..1612; CELWGQGTV -> L (in isoform 2, isoform 3 and isoform 5); 1712..1837; VNYVHQFCVGAAKGVLSPFVLQEIVMETLQRLSPAHAHNHLRAPAFHQLVQRCQQAYMQYIHHRLIHLTPADYDDFVNAIRSARSAFCLTPMGMMQFNDILQNLKRSKQTKELWQRVSLEMATFSP -> DRHGDAAAAESRSCPQPPACPGLPPTGAALPAGIHAVHPPPLDSPDSCGLRRLCECDPECPQRLLPDAHGHDAVQRHPTEPQAQQTDQGAVAAGLTRDGHLLPLSLSPLGSYTGTQACGYGGPSHRGSETWLDRSSSLSSLVAQTDSCSWAIAWGQDVSHPRSLGLGETALSGRGRWVASGIYLAFINI (in isoform 2)

Domain & Motif Annotations

Compositional Bias
55..65; Gly residues; 523..532; Basic and acidic residues; 566..575; Basic and acidic residues; 579..602; Gly residues; 1019..1040; Polar residues; 1119..1130; Gly residues; 1144..1159; Polar residues; 1174..1209; Low complexity; 1210..1226; Basic and acidic residues; 1447..1464; Gly residues
Zinc Finger
172..208; SWIM-type
Region
45..65; Disordered; 514..727; Disordered; 803..823; Disordered; 1016..1232; Disordered; 1442..1464; Disordered; 1635..1656; Disordered
Protein Families
ZSWIM8 family
Sequence Similarities
Belongs to the ZSWIM8 family.
Clinical Relevance1
Antibody
Supporting Publications1
PMIDTitleAbstract
34265469Proteomic Landscape of Exosomes Reveals the Functional Contributions of CD151 in Triple-Negative Breast Cancer.Furthermore, utilizing quantitative proteomics approach to reveal the proteomes of CD151-deleted exosomes and cells, we found that exosomal CD151 facilitated secretion of ribosomal proteins via exosomes while inhibiting exosome secretion of complement proteins. Moreover, we proved that CD151-deleted exosomes significantly decreased the migration and invasion of TNBC cells. Most importantly, we found that the tetraspanin CD151 expression levels in TNBC-derived serum exosomes were significantly higher than those exosomes from healthy subjects, and we validated our findings with samples from 16 additional donors. This is the first comparative study of the proteomes of TNBC patient-derived and CD151-deleted exosomes.