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酸性 pH 值促进 BclXL 凋亡抑制剂的寡聚化和膜插入。

Acidic pH promotes oligomerization and membrane insertion of the BclXL apoptotic repressor.

机构信息

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

出版信息

Arch Biochem Biophys. 2012 Dec 1;528(1):32-44. doi: 10.1016/j.abb.2012.08.009. Epub 2012 Aug 30.

Abstract

Solution pH is believed to serve as an intricate regulatory switch in the induction of apoptosis central to embryonic development and cellular homeostasis. Herein, using an array of biophysical techniques, we provide evidence that acidic pH promotes the assembly of BclXL apoptotic repressor into a megadalton oligomer with a plume-like appearance and harboring structural features characteristic of a molten globule. Strikingly, our data reveal that pH tightly modulates not only oligomerization but also ligand binding and membrane insertion of BclXL in a highly subtle manner. Thus, while oligomerization and the accompanying molten globular content of BclXL is least favorable at pH 6, both of these structural features become more pronounced under acidic and alkaline conditions. However, membrane insertion of BclXL appears to be predominantly favored under acidic conditions. In a remarkable contrast, while ligand binding to BclXL optimally occurs at pH 6, it is diminished by an order of magnitude at lower and higher pH. This reciprocal relationship between BclXL oligomerization and ligand binding lends new insights into how pH modulates functional versatility of a key apoptotic regulator and strongly argues that the molten globule may serve as an intermediate primed for membrane insertion in response to apoptotic cues.

摘要

溶液 pH 值被认为是胚胎发育和细胞内稳态中细胞凋亡诱导的复杂调节开关。在此,我们使用一系列生物物理技术提供证据表明,酸性 pH 值促进 BclXL 凋亡抑制剂组装成具有羽毛状外观的兆道尔顿聚集体,并具有类似于融球的结构特征。引人注目的是,我们的数据表明,pH 值不仅以高度微妙的方式调节寡聚化,还调节 BclXL 的配体结合和膜插入。因此,虽然寡聚化和伴随的 BclXL 的融球状含量在 pH 值 6 时最不利,但在酸性和碱性条件下,这些结构特征变得更加明显。然而,BclXL 的膜插入似乎主要在酸性条件下受到青睐。相比之下,虽然配体与 BclXL 的结合在 pH 值 6 时最佳,但在较低和较高 pH 值下会降低一个数量级。BclXL 寡聚化和配体结合之间的这种相互关系提供了新的见解,说明 pH 值如何调节关键凋亡调节剂的功能多样性,并强烈表明融球可能作为响应凋亡信号的膜插入的中间物。

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