Scavenger receptor class B member 1

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mammalian protein found in Homo sapiens

no tipo 'e

proteina[7]

parte 'e

CD36/scavenger receptor class B member 1[11]
Putative uncharacterized transport proteins[12]

trovato nella tassonomia de

Homo sapiens[7]

codificato da

SCARB1[7]

funzione molecolare

apolipoprotein binding[13][14]

metodo di determinazione: IEA, IPI

protein homodimerization activity[14]

metodo di determinazione: IEA

virus receptor activity[15]

metodo di determinazione: IEA

transporter activity[16]

metodo di determinazione: TAS

high-density lipoprotein particle receptor activity[17][18]

metodo di determinazione: IDA, IMP

phosphatidylserine binding[19][14]

metodo di determinazione: ISS, IEA

apolipoprotein A-I binding[13][20]

metodo di determinazione: IPI

lipopolysaccharide binding[21]

metodo di determinazione: IDA

low-density lipoprotein particle binding[18]

metodo di determinazione: IDA

1-phosphatidylinositol binding[22]

metodo di determinazione: TAS

legame dei farmaci alle proteine plasmatiche[23][24][25]

metodo di determinazione: IPI

high-density lipoprotein particle binding[14]

metodo di determinazione: IEA

lipopolysaccharide immune receptor activity[21]

metodo di determinazione: IDA

amyloid-beta binding[14]

metodo di determinazione: IEA

scavenger receptor activity[26]

metodo di determinazione: TAS

componente cellulare

citoplasma[14]

metodo di determinazione: IEA

integral component of membrane[15][14]

metodo di determinazione: IEA

endocytic vesicle membrane[27]

metodo di determinazione: TAS

intracellular membrane-bounded organelle[28]

metodo di determinazione: IDA

membrana[15][29]

metodo di determinazione: IEA

membrana cellulare[27][15][18]

metodo di determinazione: IDA, TAS, IEA

integral component of plasma membrane[14]

metodo di determinazione: IEA

cell surface[30][14]

metodo di determinazione: ISS, IEA

lysosomal membrane[31]

metodo di determinazione: IDA

Caveole[32][15][14]

metodo di determinazione: TAS, IEA

extracellular exosome[33]

metodo di determinazione: IDA

microvillus membrane[14]

metodo di determinazione: IEA

lysosomal membrane[34]

metodo di determinazione: HDA

extracellular exosome[35]

metodo di determinazione: HDA

processo biologico

cholesterol import[36][37][17][14]

metodo di determinazione: ISS, IEA, IMP

positive regulation of triglyceride biosynthetic process[19][14]

metodo di determinazione: ISS, IEA

regulation of phosphatidylcholine catabolic process[19][14]

metodo di determinazione: ISS, IEA

recognition of apoptotic cell[14][18]

metodo di determinazione: IDA, IEA

lipid transport[14]

metodo di determinazione: IEA

low-density lipoprotein particle clearance[19][14]

metodo di determinazione: ISS, IEA

blood vessel endothelial cell migration[14]

metodo di determinazione: IEA

positive regulation of cholesterol storage[18]

metodo di determinazione: IDA

phospholipid transport[19][14]

metodo di determinazione: ISS, IEA

cholesterol transport[14]

metodo di determinazione: IEA

guarigione delle ferite[38]

metodo di determinazione: TAS

cholesterol catabolic process[14]

metodo di determinazione: IEA

receptor-mediated endocytosis[27]

metodo di determinazione: TAS

high-density lipoprotein particle remodeling[19][14]

metodo di determinazione: ISS, IEA

positive regulation of endothelial cell migration[38]

metodo di determinazione: TAS

androgen biosynthetic process[14]

metodo di determinazione: IEA

vitamin transmembrane transport[17]

metodo di determinazione: IMP

positive regulation of nitric-oxide synthase activity[39]

metodo di determinazione: IDA

endothelial cell proliferation[14]

metodo di determinazione: IEA

lipopolysaccharide transport[21]

metodo di determinazione: IDA

cholesterol efflux[36][40][14]

metodo di determinazione: ISS, IEA, IMP

phagocytosis, recognition[14]

metodo di determinazione: IEA

viral entry into host cell[41]

metodo di determinazione: IEA

intestinal absorption[14]

metodo di determinazione: IEA

cholesterol homeostasis[19][14]

metodo di determinazione: ISS, IEA

regulation of phagocytosis[14][42]

metodo di determinazione: IC, IEA

adhesion of symbiont to host[43]

metodo di determinazione: IMP

viral process[15]

metodo di determinazione: IEA

detection of lipopolysaccharide[21]

metodo di determinazione: IDA

triglyceride homeostasis[19][14]

metodo di determinazione: ISS, IEA

trasporto inverso del colesterolo[44][14]

metodo di determinazione: IEP, IEA

lipopolysaccharide-mediated signaling pathway[41]

metodo di determinazione: IEA

high-density lipoprotein particle clearance[27][18]

metodo di determinazione: IDA, TAS

interagisce fisicamente con

Viroporin 3a[45]

metodo di determinazione: Affinity Capture-MS

Riferimento

  1. Ensembl Release 99, ENSP00000261693
  2. Ensembl Release 99, ENSP00000343795
  3. Ensembl Release 99, ENSP00000414979
  4. Ensembl Release 99, ENSP00000442862
  5. Ensembl Release 99, ENSP00000443454
  6. Ensembl Release 99, ENSP00000444851
  7. 7,0 7,1 7,2 7,3 UniProt, 13 Nuv 2019, Q8WTV0
  8. Classificazione TC, 13 Màr 2020
  9. Classificazione TC, 29 Abb 2020
  10. 10,00 10,01 10,02 10,03 10,04 10,05 10,06 10,07 10,08 10,09 10,10 NCBI Gene, 30 Maj 2020, 949
  11. InterPro Release 71.0, http://www.ebi.ac.uk/interpro/protein/Q8WTV0
  12. 9.B.39.1.3, 2 ott 2019, hierarchical database ID heuristic
  13. 13,0 13,1 British Heart Foundation, 8 Abb 2019, Apolipoprotein AII enrichment of HDL enhances their affinity for class B type I scavenger receptor but inhibits specific cholesteryl ester uptake, GOA, IPI, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  14. 14,00 14,01 14,02 14,03 14,04 14,05 14,06 14,07 14,08 14,09 14,10 14,11 14,12 14,13 14,14 14,15 14,16 14,17 14,18 14,19 14,20 14,21 14,22 14,23 14,24 14,25 14,26 14,27 14,28 14,29 14,30 Ensembl, 8 Abb 2019, GOA, IEA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  15. 15,0 15,1 15,2 15,3 15,4 15,5 GOA, 8 Abb 2019, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0, IEA
  16. Proteome Inc., 8 Abb 2019, Characterization of CLA-1, a Human Homologue of Rodent Scavenger Receptor BI, as a Receptor for High Density Lipoprotein and Apoptotic Thymocytes, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  17. 17,0 17,1 17,2 AgBase, 8 Abb 2019, Scavenger receptor class B, type I is expressed in porcine brain capillary endothelial cells and contributes to selective uptake of HDL-associated vitamin E, GOA, IMP, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  18. 18,0 18,1 18,2 18,3 18,4 18,5 British Heart Foundation, 8 Abb 2019, Characterization of CLA-1, a Human Homologue of Rodent Scavenger Receptor BI, as a Receptor for High Density Lipoprotein and Apoptotic Thymocytes, GOA, IDA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  19. 19,0 19,1 19,2 19,3 19,4 19,5 19,6 19,7 British Heart Foundation, 8 Abb 2019, GOA, ISS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  20. British Heart Foundation, 8 Abb 2019, Binding and internalization of lipopolysaccharide by Cla-1, a human orthologue of rodent scavenger receptor B1, GOA, IPI, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  21. 21,0 21,1 21,2 21,3 British Heart Foundation, 8 Abb 2019, Binding and internalization of lipopolysaccharide by Cla-1, a human orthologue of rodent scavenger receptor B1, GOA, IDA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  22. British Heart Foundation, 8 Abb 2019, Characterization of CLA-1, a Human Homologue of Rodent Scavenger Receptor BI, as a Receptor for High Density Lipoprotein and Apoptotic Thymocytes, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  23. IntAct protein interaction database, 8 Abb 2019, A proteome-scale map of the human interactome network, GOA, IPI, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  24. IntAct protein interaction database, 8 Abb 2019, The human scavenger receptor class B type I is a novel candidate receptor for the hepatitis C virus, GOA, IPI, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  25. AgBase, 8 Abb 2019, The human scavenger receptor class B type I is a novel candidate receptor for the hepatitis C virus, GOA, IPI, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  26. ARUK-UCL, 8 Abb 2019, Scavenger receptor class B type I (SR-BI) mediates adhesion of neonatal murine microglia to fibrillar beta-amyloid, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  27. 27,0 27,1 27,2 27,3 Reactome, 8 Abb 2019, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  28. Human Protein Atlas, 8 Abb 2019, GOA, IDA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  29. InterPro, 8 Abb 2019, GOA, IEA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  30. British Heart Foundation, 8 Abb 2019, Scavenger receptor SR-BI in macrophage lipid metabolism, GOA, ISS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  31. Integral and associated lysosomal membrane proteins, GOA, 9 Maj 2017, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/GAnnotation?protein=Q8WTV0, IDA
  32. British Heart Foundation, 8 Abb 2019, Binding and internalization of lipopolysaccharide by Cla-1, a human orthologue of rodent scavenger receptor B1, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  33. MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis, GOA, 9 Maj 2017, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/GAnnotation?protein=Q8WTV0, IDA
  34. Integral and associated lysosomal membrane proteins, GOA, 8 Abb 2019, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0, HDA
  35. MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis, GOA, 8 Abb 2019, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0, HDA
  36. 36,0 36,1 British Heart Foundation, 8 Abb 2019, Scavenger receptor class B type I-mediated cholesteryl ester-selective uptake and efflux of unesterified cholesterol. Influence of high density lipoprotein size and structure, GOA, ISS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  37. Rare variant in scavenger receptor BI raises HDL cholesterol and increases risk of coronary heart disease, GOA, 8 Abb 2019, Q8WTV0, UniProt, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0, IMP
  38. 38,0 38,1 British Heart Foundation, 8 Abb 2019, Role of high-density lipoprotein and scavenger receptor B type I in the promotion of endothelial repair, GOA, TAS, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  39. British Heart Foundation, 8 Abb 2019, High density lipoprotein binding to scavenger receptor, Class B, type I activates endothelial nitric-oxide synthase in a ceramide-dependent manner, GOA, IDA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  40. AgBase, 8 Abb 2019, ABCA1 and scavenger receptor class B, type I, are modulators of reverse sterol transport at an in vitro blood-brain barrier constituted of porcine brain capillary endothelial cells, GOA, IMP, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  41. 41,0 41,1 Gene Ontology Consortium, 8 Abb 2019, GOA, IEA, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  42. British Heart Foundation, 8 Abb 2019, Characterization of CLA-1, a Human Homologue of Rodent Scavenger Receptor BI, as a Receptor for High Density Lipoprotein and Apoptotic Thymocytes, GOA, IC, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  43. British Heart Foundation, 9 Maj 2017, Entry of pseudotyped hepatitis C virus into primary human hepatocytes depends on the scavenger class B type I receptor, GOA, IMP, http://www.ebi.ac.uk/QuickGO/GAnnotation?protein=Q8WTV0
  44. British Heart Foundation, 8 Abb 2019, Characterization of CLA-1, a Human Homologue of Rodent Scavenger Receptor BI, as a Receptor for High Density Lipoprotein and Apoptotic Thymocytes, GOA, IEP, http://www.ebi.ac.uk/QuickGO/annotations?geneProductId=UniProtKB:Q8WTV0
  45. BioGRID, A SARS-CoV-2-Human Protein-Protein Interaction Map Reveals Drug Targets and Potential Drug-Repurposing, https://thebiogrid.org/news/227, 19 Abb 2020