SCP2 (ингл. ) — аксымы, шул ук исемдәге ген тарафыннан кодлана торган югары молекуляр органик матдә.[21][22]

SCP2
Нинди таксонда бар H. sapiens[d][1]
Кодлаучы ген SCP2[d][1]
Молекуляр функция трансферазная активность[d][2], phosphatidylinositol transfer activity[d][3], fatty-acyl-CoA binding[d][4], acyltransferase activity, transferring groups other than amino-acyl groups[d][2], sterol transporter activity[d][5], oleic acid binding[d][4], long-chain fatty acyl-CoA binding[d][6], cholesterol binding[d][4], связывание с белками плазмы[d][7][8][9][…], propanoyl-CoA C-acyltransferase activity[d][2], активность катализатора[d][2], signaling receptor binding[d][10][11], acyltransferase activity[d][2], lipid binding[d][2] һәм propionyl-CoA C2-trimethyltridecanoyltransferase activity[d][2][12]
Күзәнәк компоненты мембрана[d][13], intracellular membrane-bounded organelle[d][2], пероксисома[d][2][14][11][…], нуклеоплазма[d][2], peroxisomal matrix[d][2], митохондрия[2], экзосома[d][15], цитоплазма[2], цитозоль[d][2], мембрана[d][16] һәм protein-containing complex[d][7]
Биологик процесс progesterone biosynthetic process[d][17], peroxisome organization[d][2], lipid transport[d][2], inositol trisphosphate biosynthetic process[d][3], alpha-linolenic acid metabolic process[d][2], positive regulation of steroid metabolic process[d][17], lipid hydroperoxide transport[d][18], positive regulation of intracellular cholesterol transport[d][17][19], fatty acid beta-oxidation using acyl-CoA oxidase[d][2], Метаболизм[5], protein localization to plasma membrane[d][3], bile acid biosynthetic process[d][2], sterol transport[d][5], steroid biosynthetic process[d][17][5], phospholipid transport[d][3][5], перенос[d][5], protein targeting to peroxisome[d][2], steroid biosynthetic process[d][20], phospholipid transport[d][20] һәм positive regulation of intracellular cholesterol transport[d][18][20]

Искәрмәләр

үзгәртү
  1. 1,0 1,1 UniProt
  2. 2,00 2,01 2,02 2,03 2,04 2,05 2,06 2,07 2,08 2,09 2,10 2,11 2,12 2,13 2,14 2,15 2,16 2,17 2,18 2,19 GOA
  3. 3,0 3,1 3,2 3,3 Schroeder F., Zhou M., Swaggerty C. L. et al. Sterol carrier protein-2 functions in phosphatidylinositol transfer and signaling // Biochemistry / A. SchepartzACS, 2003. — ISSN 0006-2960; 1520-4995; 1943-295Xdoi:10.1021/BI026904PMID:12641450
  4. 4,0 4,1 4,2 Martin G. G., Hostetler H. A., McIntosh A. L. et al. Structure and function of the sterol carrier protein-2 N-terminal presequence // Biochemistry / A. SchepartzACS, 2008. — ISSN 0006-2960; 1520-4995; 1943-295Xdoi:10.1021/BI800251EPMID:18465878
  5. 5,0 5,1 5,2 5,3 5,4 5,5 GOA
  6. Wilmanns M., Schultz C., Albert J.R. Heck Investigation of the ligand spectrum of human sterol carrier protein 2 using a direct mass spectrometry assay // Arch. Biochem. Biophys.Academic Press, Elsevier BV, 2007. — ISSN 0003-9861; 1096-0384doi:10.1016/J.ABB.2007.02.026PMID:17418802
  7. 7,0 7,1 Wilmanns M., Svergun D. I. Solution structure of human Pex5.Pex14.PTS1 protein complexes obtained by small angle X-ray scattering // J. Biol. Chem. / L. M. GieraschBaltimore [etc.]: American Society for Biochemistry and Molecular Biology, 2009. — ISSN 0021-9258; 1083-351X; 1067-8816doi:10.1074/JBC.M109.002311PMID:19584060
  8. Dricot A., Barabási A., Tavernier J. et al. A proteome-scale map of the human interactome network // CellCell Press, Elsevier BV, 2014. — ISSN 0092-8674; 1097-4172doi:10.1016/J.CELL.2014.10.050PMID:25416956
  9. Zhou M., Parr R. D., Petrescu A. D. et al. Sterol carrier protein-2 directly interacts with caveolin-1 in vitro and in vivo // Biochemistry / A. SchepartzACS, 2004. — ISSN 0006-2960; 1520-4995; 1943-295Xdoi:10.1021/BI035914NPMID:15182174
  10. Berg J. M. A proteome-wide perspective on peroxisome targeting signal 1(PTS1)-Pex5p affinities // J. Am. Chem. Soc. / P. J. StangACS, 2010. — ISSN 0002-7863; 1520-5126; 1943-2984doi:10.1021/JA9109049PMID:20178365
  11. 11,0 11,1 Wilmanns M., Erdmann R., Schliebs W. et al. The Peroxisomal Targeting Signal 1 in sterol carrier protein 2 is autonomous and essential for receptor recognition // BMC BiochemistryBMC, Springer Science+Business Media, 2011. — ISSN 1471-2091; 1471-2237doi:10.1186/1471-2091-12-12PMID:21375735
  12. S. Ferdinandusse, S. Denis, Mooijer P. A. et al. Identification of the peroxisomal beta-oxidation enzymes involved in the biosynthesis of docosahexaenoic acid // J. Lipid Res.American Society for Biochemistry and Molecular Biology, 2001. — ISSN 0022-2275; 1539-7262PMID:11734571
  13. Lippert D. Defining the membrane proteome of NK cells // J. Mass Spectrom.Wiley, 2010. — ISSN 1076-5174; 1096-9888doi:10.1002/JMS.1696PMID:19946888
  14. Heikoop J. C., Ossendorp B. C., Wanders R. J. et al. Subcellular localisation and processing of non-specific lipid transfer protein are not aberrant in Rhizomelic Chondrodysplasia Punctata fibroblasts // FEBS LettersElsevier BV, 1992. — ISSN 0014-5793; 1873-3468doi:10.1016/0014-5793(92)80247-EPMID:1347505
  15. Farina A., Lane L., Lescuyer P. et al. Proteomic analysis of podocyte exosome-enriched fraction from normal human urine // Journal of ProteomicsElsevier BV, 2013. — ISSN 1874-3919; 0165-022Xdoi:10.1016/J.JPROT.2013.01.012PMID:23376485
  16. Lippert D. Defining the membrane proteome of NK cells // J. Mass Spectrom.Wiley, 2010. — ISSN 1076-5174; 1096-9888doi:10.1002/JMS.1696PMID:19946888
  17. 17,0 17,1 17,2 17,3 R. Yamamoto, Kallen C. B., Babalola G. O. et al. Cloning and expression of a cDNA encoding human sterol carrier protein 2 // Proc. Natl. Acad. Sci. U.S.A. / M. R. Berenbaum[Washington, etc.], USA: National Academy of Sciences [etc.], 1991. — ISSN 0027-8424; 1091-6490doi:10.1073/PNAS.88.2.463PMID:1703300
  18. 18,0 18,1 Korytowski W. Sterol carrier protein-2-facilitated intermembrane transfer of cholesterol- and phospholipid-derived hydroperoxides // Biochemistry / A. SchepartzACS, 2004. — ISSN 0006-2960; 1520-4995; 1943-295Xdoi:10.1021/BI0491200PMID:15449949
  19. Korytowski W. Sterol carrier protein-2-facilitated intermembrane transfer of cholesterol- and phospholipid-derived hydroperoxides // Biochemistry / A. SchepartzACS, 2004. — ISSN 0006-2960; 1520-4995; 1943-295Xdoi:10.1021/BI0491200PMID:15449949
  20. 20,0 20,1 20,2 Livstone M. S., Thomas P. D., Lewis S. E. et al. Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium // Brief. Bioinform.OUP, 2011. — ISSN 1467-5463; 1477-4054doi:10.1093/BIB/BBR042PMID:21873635
  21. HUGO Gene Nomenclature Commitee, HGNC:29223 (ингл.). әлеге чыганактан 2015-10-25 архивланды. 18 сентябрь, 2017 тикшерелгән.
  22. UniProt, Q9ULJ7 (ингл.). 18 сентябрь, 2017 тикшерелгән.

Чыганаклар

үзгәртү
  • Степанов В.М. (2005). Молекулярная биология. Структура и функция белков. Москва: Наука. ISBN 5-211-04971-3.(рус.)
  • Bruce Alberts, Alexander Johnson, Julian Lewis, Martin Raff, Keith Roberts, Peter Walter (2002). Molecular Biology of the Cell (вид. 4th). Garland. ISBN 0815332181.(ингл.)