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B 细胞淋巴瘤蛋白 2 凋亡抑制剂与 BH3 配体随意结合的生物物理基础。

Biophysical basis of the promiscuous binding of B-cell lymphoma protein 2 apoptotic repressor to BH3 ligands.

机构信息

Department of Biochemistry & Molecular Biology, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.

出版信息

J Mol Recognit. 2013 Oct;26(10):501-13. doi: 10.1002/jmr.2295.

Abstract

B-cell lymphoma protein 2 (Bcl2) apoptotic repressor carries out its function by virtue of its ability to bind to BH3 domains of various pro-apoptotic regulators in a highly promiscuous manner. Herein, we investigate the biophysical basis of such promiscuity of Bcl2 toward its cognate BH3 ligands. Our data show that although the BH3 ligands harboring the LXXXAD motif bind to Bcl2 with submicromolar affinity, those with the LXXX[G/S]D motif afford weak interactions. This implies that the replacement of alanine at the fourth position (A + 4)-relative to the N-terminal leucine (L0) within the LXXXAD motif-to glycine/serine results in the loss of free energy of binding. Consistent with this notion, the A + 4 residue within the BH3 ligands harboring the LXXXAD motif engages in key intermolecular van der Waals contacts with A149 lining the ligand binding groove within Bcl2, whereas A + 4G/S substitution results in the disruption of such favorable binding interactions. Of particular interest is the observation that although increasing ionic strength has little or negligible effect on the binding of high-affinity BH3 ligands harboring the LXXXAD motif, the binding of those with the LXXX[G/S]D motif in general experiences a varying degree of enhancement. This salient observation is indicative of the fact that hydrophobic forces not only play a dominant but also a universal role in driving the Bcl2-BH3 interactions. Taken together, our study sheds light on the molecular basis of the factors governing the promiscuous binding of Bcl2 to pro-apoptotic regulators and thus bears important consequences on the development of rational therapeutic approaches.

摘要

B 细胞淋巴瘤蛋白 2(Bcl2)凋亡抑制剂通过其与各种促凋亡调节剂的 BH3 结构域以高度混杂的方式结合的能力发挥其功能。在此,我们研究了 Bcl2 与其同源 BH3 配体之间混杂的生物物理基础。我们的数据表明,尽管含有 LXXXAD 基序的 BH3 配体与 Bcl2 的结合亲和力为亚微摩尔,但含有 LXXX[G/S]D 基序的配体则提供较弱的相互作用。这意味着在 LXXXAD 基序中相对于 N 端亮氨酸(L0)的第四个位置(A + 4)处的丙氨酸/丝氨酸的替换导致结合自由能的丧失。与这一观点一致的是,在含有 LXXXAD 基序的 BH3 配体中,A + 4 残基与 Bcl2 中配体结合槽内 lining 的 A149 进行关键的分子间范德华接触,而 A + 4G/S 取代导致这种有利的结合相互作用被破坏。特别有趣的是,尽管增加离子强度对含有 LXXXAD 基序的高亲和力 BH3 配体的结合几乎没有或没有影响,但通常情况下,含有 LXXX[G/S]D 基序的配体的结合会受到不同程度的增强。这一显著观察结果表明,疏水作用力不仅起着主导作用,而且在驱动 Bcl2-BH3 相互作用中起着普遍作用。总之,我们的研究阐明了调节 Bcl2 与促凋亡调节剂混杂结合的因素的分子基础,因此对开发合理的治疗方法具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28f4/3761409/f98b8b25e6a4/nihms-499074-f0001.jpg

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