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与Bim的BH3肽结合的Bax晶体结构确定了相互作用的重要接触点。

Crystal structure of Bax bound to the BH3 peptide of Bim identifies important contacts for interaction.

作者信息

Robin A Y, Krishna Kumar K, Westphal D, Wardak A Z, Thompson G V, Dewson G, Colman P M, Czabotar P E

机构信息

1] The Walter and Eliza Hall Institute of Medical Research, Melbourne, VIC, Australia [2] Department of Medical Biology, The University of Melbourne, Melbourne, VIC, Australia.

The Walter and Eliza Hall Institute of Medical Research, Melbourne, VIC, Australia.

出版信息

Cell Death Dis. 2015 Jul 9;6(7):e1809. doi: 10.1038/cddis.2015.141.

Abstract

The BH3-only protein Bim is a potent direct activator of the proapoptotic effector protein Bax, but the structural basis for its activity has remained poorly defined. Here we describe the crystal structure of the BimBH3 peptide bound to BaxΔC26 and structure-based mutagenesis studies. Similar to BidBH3, the BimBH3 peptide binds into the cognate surface groove of Bax using the conserved hydrophobic BH3 residues h1-h4. However, the structure and mutagenesis data show that Bim is less reliant compared with Bid on its 'h0' residues for activating Bax and that a single amino-acid difference between Bim and Bid encodes a fivefold difference in Bax-binding potency. Similar to the structures of BidBH3 and BaxBH3 bound to BaxΔC21, the structure of the BimBH3 complex with BaxΔC displays a cavity surrounded by Bax α1, α2, α5 and α8. Our results are consistent with a model in which binding of an activator BH3 domain to the Bax groove initiates separation of its core (α2-α5) and latch (α6-α8) domains, enabling its subsequent dimerisation and the permeabilisation of the mitochondrial outer membrane.

摘要

仅含BH3结构域的蛋白Bim是促凋亡效应蛋白Bax的一种强效直接激活剂,但其活性的结构基础仍不清楚。在此,我们描述了与BaxΔC26结合的BimBH3肽的晶体结构以及基于结构的诱变研究。与BidBH3类似,BimBH3肽利用保守的疏水BH3残基h1-h4结合到Bax的同源表面凹槽中。然而,结构和诱变数据表明,与Bid相比,Bim在激活Bax时对其“h0”残基的依赖性较小,并且Bim和Bid之间的单个氨基酸差异导致Bax结合能力相差五倍。与结合到BaxΔC21的BidBH3和BaxBH3的结构类似,BimBH3与BaxΔC的复合物结构显示出一个由Bax的α1、α2、α5和α8围绕的腔。我们的结果与一个模型一致,即激活剂BH3结构域与Bax凹槽的结合启动了其核心(α2-α5)和闩锁(α6-α8)结构域的分离,使其随后二聚化并导致线粒体外膜通透性增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78c3/4650713/addcddb65650/cddis2015141f1.jpg

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