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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Menin regulates Inhbb expression through an Akt/Ezh2-mediated H3K27 histone modification
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Menin regulates Inhbb expression through an Akt/Ezh2-mediated H3K27 histone modification

机译:Menin通过AKT / EZH2介导的H3K27组蛋白改性调节INBB表达

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摘要

Although Men1 is a well-known tumour suppressor gene, little is known about the functions of Menin, the protein it encodes for. Since few years, numerous publications support a major role of Menin in the control of epigenetics gene regulation. While Menin interaction with MLL complex favours transcriptional activation of target genes through H3K4me3 marks, Menin also represses gene expression via mechanisms involving the Polycomb repressing complex (PRC). Interestingly, Ezh2, the PRC-methyltransferase that catalyses H3K27me3 repressive marks and Menin have been shown to co-occupy a large number of promoters. However, lack of binding between Menin and Ezh2 suggests that another member of the PRC complex is mediating this indirect interaction. Having found that ActivinB - a TGF beta, superfamily member encoded by the Inhbb gene - is upregulated in insulinoma tumours caused by Men 1 invalidation, we hypothesize that Menin could directly participate in the epigenetic -repression of Inhbb gene expression. Using Animal model and cell lines, we report that loss of Menin is directly associated with ActivinB-induced expression both in vivo and in vitro. Our work further reveals that ActivinB expression is mediated through a direct modulation of H3K27me3 marks on the Inhbb locus in Menin-KO cell lines. More importantly, we show that Menin binds on the promoter of Inhbb gene where it favours the recruitment of Ezh2 via an indirect mechanism involving Akt-phosphorylation. Our data suggests therefore that Menin could take an important part to the Ezh2-epigenetic repressive landscape in many cells and tissues through its capacity to modulate Akt phosphorylation. (C) 2017 Elsevier B.V. All rights reserved.
机译:虽然MEN1是众所周知的肿瘤抑制基因,但对于menin的功能很少,它编码的蛋白质。自几年以来,许多出版物支持menin在对表观遗传学基因调控中的控制中的主要作用。虽然Menin与MLL复合物的相互作用通过H3K4ME3标记进行了靶基因的转录激活,但Menin也通过涉及Polycomb抑制复合物(PRC)的机制来抑制基因表达。有趣的是,EZH2,催化H3K27ME3抑制作用和Menin的PRC-甲基转移酶已被证明共同占据了大量的启动子。然而,Menin和EZH2之间的结合表明,中国复合物的另一个成员正在调解这种间接相互作用。发现ActivinB - 一种TGFβ,由INHBB基因编码的超家族成员是由男性1无效引起的胰岛素瘤肿瘤上调,我们假设Menin可以直接参与INBB基因表达的表观遗传学血管脑。使用动物模型和细胞系,我们报告称Menin的丧失与体内和体外中的ActivinB诱导的表达直接相关。我们的作品进一步揭示了激活催化表达通过直接调制Menin-Ko细胞系Inhbb基因座的H3K27ME3标记进行介导。更重要的是,我们表明Menin在inhBB基因的启动子上结合,其中它通过涉及Akt-磷酸化的间接机制募集EzH2。因此,我们的数据表明,Menin可以通过其调节Akt磷酸化的能力来对许多细胞和组织中的EZH2-表观遗传抑制作用的重要组成部分。 (c)2017 Elsevier B.v.保留所有权利。

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