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Nkx2.5的羧基末端会削弱其与p300的相互作用。

Carboxyl terminus of Nkx2.5 impairs its interaction with p300.

作者信息

Li Tao, Li Yan-Ming, Jia Zhu-Qing, Chen Ping, Ma Kang-Tao, Zhou Chun-Yan

机构信息

Department of Biochemistry and Molecular Biology, Peking University Health Science Center, Beijing 100083, China.

出版信息

J Mol Biol. 2007 Jul 27;370(5):976-92. doi: 10.1016/j.jmb.2007.05.033. Epub 2007 May 18.

Abstract

The transcription factor Nkx2.5 plays critical roles in controlling cardiac-specific gene expression. Previous reports demonstrated that Nkx2.5 is only a modest transactivator due to the auto-inhibitory effect of its C-terminal domain. Deletion of the C-terminal domain, mimicking conformational change, evokes vigorous transactivation activity. Here, we show that a C-terminal defective mutant of Nkx2.5 improves the occupation of p300 at the ANF promoter compared with full-length Nkx2.5, leading to hyperacetylation of histone H4. We reveal that p300 is a cofactor of Nkx2.5, markedly potentiating Nkx2.5-dependent transactivation, whereas E1A antigen impairs Nkx2.5 activity. Furthermore, p300 can acetylate Nkx2.5 and display an acetyltransferase-independent mechanism to coactivate Nkx2.5. Physical interaction between the N-terminal activation domain of Nkx2.5 and the C/H3 domain of p300 are identified by GST pull-down assay. Point mutants of the N-terminal modify the transcriptional activity of Nkx2.5 and interaction with p300. Deletion of the C-terminal domain greatly facilitates p300 binding and improves the susceptibility of Nkx2.5 to histone deacetylase inhibitor. These results establish that p300 acts as an Nkx2.5 cofactor and facilitates increased Nkx2.5 activity by relieving the conformational impediment of its inhibitory C-terminal domain.

摘要

转录因子Nkx2.5在控制心脏特异性基因表达中发挥着关键作用。先前的报道表明,由于其C末端结构域的自抑制作用,Nkx2.5只是一种适度的反式激活因子。删除C末端结构域,模拟构象变化,可引发强烈的反式激活活性。在此,我们表明,与全长Nkx2.5相比,Nkx2.5的C末端缺陷突变体可提高p300在ANF启动子上的占据率,导致组蛋白H4的过度乙酰化。我们发现p300是Nkx2.5的辅因子,可显著增强Nkx2.5依赖性的反式激活,而E1A抗原会损害Nkx2.5的活性。此外,p300可使Nkx2.5乙酰化,并显示出一种不依赖乙酰转移酶的机制来共激活Nkx2.5。通过GST下拉实验确定了Nkx2.5的N末端激活结构域与p300的C/H3结构域之间的物理相互作用。N末端的点突变改变了Nkx2.5的转录活性以及与p300的相互作用。删除C末端结构域极大地促进了p300的结合,并提高了Nkx2.5对组蛋白去乙酰化酶抑制剂的敏感性。这些结果表明,p300作为Nkx2.5的辅因子,通过解除其抑制性C末端结构域的构象障碍来促进Nkx2.5活性的增加。

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