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卷曲螺旋共激活因子在介导缺氧诱导因子异源二聚化的相互作用中发挥结构作用。

Coiled-coil coactivators play a structural role mediating interactions in hypoxia-inducible factor heterodimerization.

作者信息

Guo Yirui, Scheuermann Thomas H, Partch Carrie L, Tomchick Diana R, Gardner Kevin H

机构信息

From the Departments of Biophysics and Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8816 and.

From the Departments of Biophysics and Biochemistry, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8816 and the Structural Biology Initiative, CUNY Advanced Science Research Center, and Department of Chemistry, City College of New York, New York, New York 10031

出版信息

J Biol Chem. 2015 Mar 20;290(12):7707-21. doi: 10.1074/jbc.M114.632786. Epub 2015 Jan 27.

Abstract

The hypoxia-inducible factor complex (HIF-α·aryl hydrocarbon receptor nuclear translocator (ARNT)) requires association with several transcription coactivators for a successful cellular response to hypoxic stress. In addition to the conventional global transcription coactivator CREB-binding protein/p300 (CBP/p300) that binds to the HIF-α transactivation domain, a new group of transcription coactivators called the coiled-coil coactivators (CCCs) interact directly with the second PER-ARNT-SIM (PAS) domain of ARNT (ARNT PAS-B). These less studied transcription coactivators play essential roles in the HIF-dependent hypoxia response, and CCC misregulation is associated with several forms of cancer. To better understand CCC protein recruitment by the heterodimeric HIF transcription factor, we used x-ray crystallography, NMR spectroscopy, and biochemical methods to investigate the structure of the ARNT PAS-B domain in complex with the C-terminal fragment of a coiled-coil coactivator protein, transforming acidic coiled-coil coactivator 3 (TACC3). We found that the HIF-2α PAS-B domain also directly interacts with TACC3, motivating an NMR data-derived model suggesting a means by which TACC3 could form a ternary complex with HIF-2α PAS-B and ARNT PAS-B via β-sheet/coiled-coil interactions. These findings suggest that TACC3 could be recruited as a bridge to cooperatively mediate between the HIF-2α PAS-B·ARNT PAS-B complex, thereby participating more directly in HIF-dependent gene transcription than previously anticipated.

摘要

缺氧诱导因子复合物(HIF-α·芳烃受体核转运蛋白(ARNT))需要与多种转录共激活因子结合,才能成功地对缺氧应激做出细胞反应。除了与HIF-α反式激活结构域结合的传统全局转录共激活因子CREB结合蛋白/p300(CBP/p300)外,一组新的转录共激活因子,即卷曲螺旋共激活因子(CCC),直接与ARNT的第二个PER-ARNT-SIM(PAS)结构域(ARNT PAS-B)相互作用。这些研究较少的转录共激活因子在HIF依赖的缺氧反应中起重要作用,而CCC的失调与多种癌症相关。为了更好地理解异二聚体HIF转录因子对CCC蛋白的招募机制,我们利用X射线晶体学、核磁共振光谱和生化方法,研究了与卷曲螺旋共激活因子蛋白转化酸性卷曲螺旋共激活因子3(TACC3)的C末端片段形成复合物的ARNT PAS-B结构域的结构。我们发现HIF-2α PAS-B结构域也直接与TACC3相互作用,由此得到一个基于核磁共振数据的模型,该模型表明TACC3可能通过β-折叠/卷曲螺旋相互作用与HIF-2α PAS-B和ARNT PAS-B形成三元复合物的方式。这些发现表明,TACC3可以作为桥梁被招募,在HIF-2α PAS-B·ARNT PAS-B复合物之间协同介导,从而比之前预期更直接地参与HIF依赖的基因转录。

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