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致癌蛋白甘菊环蛋白与RelA相互作用并抑制核因子κB活性。

The oncoprotein gankyrin interacts with RelA and suppresses NF-kappaB activity.

作者信息

Higashitsuji Hiroaki, Higashitsuji Hisako, Liu Yu, Masuda Tomoko, Fujita Takanori, Abdel-Aziz H Ismail, Kongkham Supranee, Dawson Simon, John Mayer R, Itoh Yoshito, Sakurai Toshiharu, Itoh Katsuhiko, Fujita Jun

机构信息

Department of Clinical Molecular Biology, Graduate School of Medicine, Kyoto University, 54 Shogoin Kawaharacho, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

Biochem Biophys Res Commun. 2007 Nov 23;363(3):879-84. doi: 10.1016/j.bbrc.2007.09.072. Epub 2007 Sep 29.

Abstract

Gankyrin is an oncoprotein commonly overexpressed in hepatocellular carcinomas. It interacts with multiple proteins and accelerates degradation of tumor suppressors Rb and p53. Since gankyrin consists of 7 ankyrin repeats and is structurally similar to IkappaBs, we investigated its interaction with NF-kappaB. We found that gankyrin directly binds to RelA. In HeLa and 293 cells, overexpression of gankyrin suppressed the basal as well as TNFalpha-induced transcriptional activity of NF-kappaB, whereas down-regulation of gankyrin increased it. Gankyrin did not affect the NF-kappaB DNA-binding activity or nuclear translocation of RelA induced by TNFalpha in these cells. Leptomycin B that inhibits nuclear export of RelA suppressed the NF-kappaB activity, which was further suppressed by gankyrin. The inhibitory effect of gankyrin was abrogated by nicotinamide as well as down-regulation of SIRT1, a class III histone deacetylase. Thus, gankyrin binds to NF-kappaB and suppresses its activity at the transcription level by modulating acetylation via SIRT1.

摘要

Gankyrin是一种在肝细胞癌中普遍过度表达的癌蛋白。它与多种蛋白质相互作用,并加速肿瘤抑制因子Rb和p53的降解。由于Gankyrin由7个锚蛋白重复序列组成,且在结构上与IkappaB相似,我们研究了它与NF-κB的相互作用。我们发现Gankyrin直接与RelA结合。在HeLa细胞和293细胞中,Gankyrin的过表达抑制了NF-κB的基础转录活性以及TNFα诱导的转录活性,而Gankyrin的下调则使其增加。Gankyrin不影响这些细胞中TNFα诱导的NF-κB DNA结合活性或RelA的核转位。抑制RelA核输出的放线菌素B抑制了NF-κB活性,而Gankyrin进一步抑制了该活性。Gankyrin的抑制作用被烟酰胺以及III类组蛋白去乙酰化酶SIRT1的下调所消除。因此,Gankyrin与NF-κB结合,并通过SIRT1调节乙酰化在转录水平上抑制其活性。

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