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高迁移率族蛋白B增强孕激素受体序列特异性DNA结合的机制。

Mechanism of high-mobility group protein B enhancement of progesterone receptor sequence-specific DNA binding.

作者信息

Roemer Sarah C, Adelman James, Churchill Mair E A, Edwards Dean P

机构信息

Program in Molecular Biology, University of Colorado Denver, School of Medicine, Aurora, CO 80045, USA.

出版信息

Nucleic Acids Res. 2008 Jun;36(11):3655-66. doi: 10.1093/nar/gkn249. Epub 2008 May 12.

Abstract

The DNA-binding domain (DBD) of progesterone receptor (PR) is bipartite containing a zinc module core that interacts with progesterone response elements (PRE), and a short flexible carboxyl terminal extension (CTE) that interacts with the minor groove flanking the PRE. The chromosomal high-mobility group B proteins (HMGB), defined as DNA architectural proteins capable of bending DNA, also function as auxiliary factors that increase the DNA-binding affinity of PR and other steroid receptors by mechanisms that are not well defined. Here we show that the CTE of PR contains a specific binding site for HMGB that is required for stimulation of PR-PRE binding, whereas the DNA architectural properties of HMGB are dispensable. Specific PRE DNA inhibited HMGB binding to the CTE, indicating that DNA and HMGB-CTE interactions are mutually exclusive. Exogenous CTE peptide increased PR-binding affinity for PRE as did deletion of the CTE. In a PR-binding site selection assay, A/T sequences flanking the PRE were enriched by HMGB, indicating that PR DNA-binding specificity is also altered by HMGB. We conclude that a transient HMGB-CTE interaction alters a repressive conformation of the flexible CTE enabling it to bind to preferred sequences flanking the PRE.

摘要

孕酮受体(PR)的DNA结合结构域(DBD)由两部分组成,包含一个与孕酮反应元件(PRE)相互作用的锌模块核心,以及一个与PRE侧翼小沟相互作用的短柔性羧基末端延伸(CTE)。染色体高迁移率族B蛋白(HMGB)被定义为能够弯曲DNA的DNA结构蛋白,它也作为辅助因子,通过尚未明确的机制增加PR和其他类固醇受体的DNA结合亲和力。在这里,我们表明PR的CTE包含一个HMGB的特异性结合位点,这是刺激PR与PRE结合所必需的,而HMGB的DNA结构特性则是可有可无的。特异性PRE DNA抑制HMGB与CTE的结合,表明DNA与HMGB-CTE的相互作用是相互排斥的。外源性CTE肽增加了PR与PRE的结合亲和力,CTE缺失也有同样的效果。在PR结合位点选择试验中,PRE侧翼的A/T序列被HMGB富集,表明PR的DNA结合特异性也被HMGB改变。我们得出结论,短暂的HMGB-CTE相互作用改变了柔性CTE的抑制构象,使其能够与PRE侧翼的优选序列结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ebc/2441811/c23a96c7cae1/gkn249f1.jpg

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