Receptor retinoinske kiseline alfa (RAR-alfa), isto poznat kao NR1B1 (nuklearni receptor potfamilije 1, grupa B, član 1), je nuklearni receptor kodiran genom RARA.
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Zatvori
Pokazano je za receptor retinoinske kiseline gama da može da formnira interakciju sa NCOA6,[1][2][3] CLOCK,[4] TADA3L,[5] Cink prst i BTB domen-sadržavajući protein 16,[6] Src,[7][8] Nuklearni receptor srodni 1 protein (NURR1),[9] Mali heterodimer partner (SHP),[10][11] NPAS2,[4] Cyclin D3,[12] Nuklearni receptor korepresor 1,[13][14] BAG1,[15] Nuklearni receptor korepresor 2,[16][17] NRIP1,[18][19][20] Protein promielocitna leukemije[21] i Retinoidni X receptor alfa.[22][23]
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Martin; Delmotte , Formstecher , Lefebvre (Sep 2003). „PLZF is a negative regulator of retinoic acid receptor transcriptional activity”. Nucl. Recept. 1 (1): 6. DOI:10.1186/1478-1336-1-6. PMID 14521715.
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Despouy, Gilles; Bastie Jean-Nöel, Deshaies Sylvie, Balitrand Nicole, Mazharian Alexandra, Rochette-Egly Cécile, Chomienne Christine, Delva Laurent (Feb 2003). „Cyclin D3 is a cofactor of retinoic acid receptors, modulating their activity in the presence of cellular retinoic acid-binding protein II”. J. Biol. Chem. (United States) 278 (8): 6355–62. DOI:10.1074/jbc.M210697200. ISSN 0021-9258. PMID 12482873.
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Guidez, F; Ivins S, Zhu J, Söderström M, Waxman S, Zelent A (Apr 1998). „Reduced retinoic acid-sensitivities of nuclear receptor corepressor binding to PML- and PLZF-RARalpha underlie molecular pathogenesis and treatment of acute promyelocytic leukemia”. Blood (UNITED STATES) 91 (8): 2634–42. ISSN 0006-4971. PMID 9531570.
Liu, R; Takayama S, Zheng Y, Froesch B, Chen G Q, Zhang X, Reed J C, Zhang X K (Jul 1998). „Interaction of BAG-1 with retinoic acid receptor and its inhibition of retinoic acid-induced apoptosis in cancer cells”. J. Biol. Chem. (UNITED STATES) 273 (27): 16985–92. ISSN 0021-9258. PMID 9642262.
Dong, Shuo; Tweardy David J (Apr 2002). „Interactions of STAT5b-RARalpha, a novel acute promyelocytic leukemia fusion protein, with retinoic acid receptor and STAT3 signaling pathways”. Blood (United States) 99 (8): 2637–46. ISSN 0006-4971. PMID 11929748.
Hong, S H; David G, Wong C W, Dejean A, Privalsky M L (Aug 1997). „SMRT corepressor interacts with PLZF and with the PML-retinoic acid receptor alpha (RARalpha) and PLZF-RARalpha oncoproteins associated with acute promyelocytic leukemia”. Proc. Natl. Acad. Sci. U.S.A. (UNITED STATES) 94 (17): 9028–33. ISSN 0027-8424. PMID 9256429.
Hu, Xinli; Chen Yixin, Farooqui Mariya, Thomas Mary C, Chiang Cheng-Ming, Wei Li-Na (Jan 2004). „Suppressive effect of receptor-interacting protein 140 on coregulator binding to retinoic acid receptor complexes, histone-modifying enzyme activity, and gene activation”. J. Biol. Chem. (United States) 279 (1): 319–25. DOI:10.1074/jbc.M307621200. ISSN 0021-9258. PMID 14581481.
Farooqui, Mariya; Franco Peter J, Thompson Jim, Kagechika Hiroyuki, Chandraratna Roshantha A S, Banaszak Len, Wei Li-Na (Feb 2003). „Effects of retinoid ligands on RIP140: molecular interaction with retinoid receptors and biological activity”. Biochemistry (United States) 42 (4): 971–9. DOI:10.1021/bi020497k. ISSN 0006-2960. PMID 12549917.
Zhong, S; Delva L, Rachez C, Cenciarelli C, Gandini D, Zhang H, Kalantry S, Freedman L P, Pandolfi P P (Nov 1999). „A RA-dependent, tumour-growth suppressive transcription complex is the target of the PML-RARalpha and T18 oncoproteins”. Nat. Genet. (UNITED STATES) 23 (3): 287–95. DOI:10.1038/15463. ISSN 1061-4036. PMID 10610177.