Sandbox GGC12
From Proteopedia
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| - | ==Serum Albumin== | + | == Human Serum Albumin== |
<StructureSection load='1AO6' size='340' side='right' caption='Serum Albumin Protein' scene='78/781196/00_green_cartoon/1'> | <StructureSection load='1AO6' size='340' side='right' caption='Serum Albumin Protein' scene='78/781196/00_green_cartoon/1'> | ||
Human serum albumin or HSA is one of the major types of proteins that are present in the plasma composition. It is such abundant that its concentration on a common blood sample is 5 grams per 100 milliliters. Due to its high concentration in plasma as well as its physiological and pharmaceutical features, it has been subjected to several studies to determine its 3D structure, function, domains, important binding sites, and diseases. The primary structure of HSA describes a single polypeptide with 585 amino acids with the characteristics of having 17 pairs of disulfide bridges, one free cysteine <ref>PMID: 6275391</ref>. It has been discovered that there are highly conserved sequences between bovine, human and rat albumins such as Trp-212, 143-155 and 244-263 sequence <ref>PMID: 6192439</ref>. It is composed of three domains at positions 19-210, 211-403, and 404-601 with two subdomains each (Ia&b, IIa&b, and IIIa&b). The subcellular location of these protein is the extracellular region on the outside of the cell membrane or secreted. There are 11 metal binding sites, including 1 copper site, 7 calcium sites, 3 zinc sites, additionally, 1 binding site for bilirubin and 1 site for aspirin-acetylated lysine <ref>PMID: 10388840</ref>. | Human serum albumin or HSA is one of the major types of proteins that are present in the plasma composition. It is such abundant that its concentration on a common blood sample is 5 grams per 100 milliliters. Due to its high concentration in plasma as well as its physiological and pharmaceutical features, it has been subjected to several studies to determine its 3D structure, function, domains, important binding sites, and diseases. The primary structure of HSA describes a single polypeptide with 585 amino acids with the characteristics of having 17 pairs of disulfide bridges, one free cysteine <ref>PMID: 6275391</ref>. It has been discovered that there are highly conserved sequences between bovine, human and rat albumins such as Trp-212, 143-155 and 244-263 sequence <ref>PMID: 6192439</ref>. It is composed of three domains at positions 19-210, 211-403, and 404-601 with two subdomains each (Ia&b, IIa&b, and IIIa&b). The subcellular location of these protein is the extracellular region on the outside of the cell membrane or secreted. There are 11 metal binding sites, including 1 copper site, 7 calcium sites, 3 zinc sites, additionally, 1 binding site for bilirubin and 1 site for aspirin-acetylated lysine <ref>PMID: 10388840</ref>. | ||
Revision as of 17:09, 28 April 2021
Human Serum Albumin
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References
- ↑ Dugaiczyk A, Law SW, Dennison OE. Nucleotide sequence and the encoded amino acids of human serum albumin mRNA. Proc Natl Acad Sci U S A. 1982 Jan;79(1):71-5. PMID:6275391
- ↑ Morinaga T, Sakai M, Wegmann TG, Tamaoki T. Primary structures of human alpha-fetoprotein and its mRNA. Proc Natl Acad Sci U S A. 1983 Aug;80(15):4604-8. PMID:6192439
- ↑ Sugio S, Kashima A, Mochizuki S, Noda M, Kobayashi K. Crystal structure of human serum albumin at 2.5 A resolution. Protein Eng. 1999 Jun;12(6):439-46. PMID:10388840
- ↑ Sugio S, Kashima A, Mochizuki S, Noda M, Kobayashi K. Crystal structure of human serum albumin at 2.5 A resolution. Protein Eng. 1999 Jun;12(6):439-46. PMID:10388840
- ↑ Pardridge WM. Plasma protein-mediated transport of steroid and thyroid hormones. Am J Physiol. 1987 Feb;252(2 Pt 1):E157-64. doi: 10.1152/ajpendo.1987.252.2.E157. PMID:3548415 doi:http://dx.doi.org/10.1152/ajpendo.1987.252.2.E157
- ↑ Lu J, Stewart AJ, Sadler PJ, Pinheiro TJ, Blindauer CA. Albumin as a zinc carrier: properties of its high-affinity zinc-binding site. Biochem Soc Trans. 2008 Dec;36(Pt 6):1317-21. doi: 10.1042/BST0361317. PMID:19021548 doi:10.1042/BST0361317
- ↑ Konopka K, Neilands JB. Effect of serum albumin on siderophore-mediated utilization of transferrin iron. Biochemistry. 1984 May 8;23(10):2122-7. doi: 10.1021/bi00305a003. PMID:6234017 doi:http://dx.doi.org/10.1021/bi00305a003
- ↑ Lai S, Gopalakrishnan G, Li J, Liu X, Chen Y, Wen Y, Zhang S, Huang B, Phornphutkul C, Liu S, Kuang J. Familial Dysalbuminemic Hyperthyroxinemia (FDH), Albumin Gene Variant (R218S), and Risk of Miscarriages in Offspring. Am J Med Sci. 2020 Nov;360(5):566-574. doi: 10.1016/j.amjms.2020.05.035. Epub, 2020 May 28. PMID:32665066 doi:http://dx.doi.org/10.1016/j.amjms.2020.05.035
- ↑ Watkins S, Madison J, Galliano M, Minchiotti L, Putnam FW. A nucleotide insertion and frameshift cause analbuminemia in an Italian family. Proc Natl Acad Sci U S A. 1994 Mar 15;91(6):2275-9. doi: 10.1073/pnas.91.6.2275. PMID:8134387 doi:http://dx.doi.org/10.1073/pnas.91.6.2275
- ↑ Handing KB, Shabalin IG, Kassaar O, Khazaipoul S, Blindauer CA, Stewart AJ, Chruszcz M, Minor W. Circulatory zinc transport is controlled by distinct interdomain sites on mammalian albumins. Chem Sci. 2016 Nov 1;7(11):6635-6648. doi: 10.1039/c6sc02267g. Epub 2016 Aug 15. PMID:28567254 doi:http://dx.doi.org/10.1039/c6sc02267g
- ↑ Wenskowsky L, Wagner M, Reusch J, Schreuder H, Matter H, Opatz T, Petry SM. Resolving Binding Events on the Multifunctional Human Serum Albumin. ChemMedChem. 2020 Mar 11. doi: 10.1002/cmdc.202000069. PMID:32162429 doi:http://dx.doi.org/10.1002/cmdc.202000069
