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脑线粒体中BAX的插入、寡聚化及外膜通透性改变:通透性转换和SH-氧化还原调节的作用

BAX insertion, oligomerization, and outer membrane permeabilization in brain mitochondria: role of permeability transition and SH-redox regulation.

作者信息

Brustovetsky Tatiana, Li Tsyregma, Yang Youyun, Zhang Jiang-Ting, Antonsson Bruno, Brustovetsky Nickolay

机构信息

Department of Pharmacology and Toxicology, Indiana University School of Medicine, 635 Barnhill Drive, Indianapolis, IN 46202, USA.

出版信息

Biochim Biophys Acta. 2010 Nov;1797(11):1795-806. doi: 10.1016/j.bbabio.2010.07.006. Epub 2010 Jul 23.

Abstract

BAX cooperates with truncated BID (tBID) and Ca(2+) in permeabilizing the outer mitochondrial membrane (OMM) and releasing mitochondrial apoptogenic proteins. The mechanisms of this cooperation are still unclear. Here we show that in isolated brain mitochondria, recombinant BAX readily self-integrates/oligomerizes in the OMM but produces only a minuscule release of cytochrome c, indicating that BAX insertion/oligomerization in the OMM does not always lead to massive OMM permeabilization. Ca(2+) in a mitochondrial permeability transition (mPT)-dependent and recombinant tBID in an mPT-independent manner promoted BAX insertion/ oligomerization in the OMM and augmented cytochrome c release. Neither tBID nor Ca(2+) induced BAX oligomerization in the solution without mitochondria, suggesting that BAX oligomerization required interaction with the organelles and followed rather than preceded BAX insertion in the OMM. Recombinant Bcl-xL failed to prevent BAX insertion/oligomerization in the OMM but strongly attenuated cytochrome c release. On the other hand, a reducing agent, dithiothreitol (DTT), inhibited BAX insertion/oligomerization augmented by tBID or Ca(2+) and suppressed the BAX-mediated release of cytochrome c and Smac/DIABLO but failed to inhibit Ca(2+)-induced swelling. Altogether, these data suggest that in brain mitochondria, BAX insertion/oligomerization can be dissociated from OMM permeabilization and that tBID and Ca(2+) stimulate BAX insertion/oligomerization and BAX-mediated OMM permeabilization by different mechanisms involving mPT induction and modulation of the SH-redox state.

摘要

BAX与截短型BID(tBID)及Ca(2+)协同作用,使线粒体外膜(OMM)通透性增加并释放线粒体凋亡蛋白。这种协同作用的机制仍不清楚。在此我们表明,在分离的脑线粒体中,重组BAX易于在线粒体外膜中自我整合/寡聚化,但仅产生极少量的细胞色素c释放,这表明BAX在线粒体外膜中的插入/寡聚化并不总是导致线粒体外膜大量通透性增加。线粒体通透性转换(mPT)依赖性的Ca(2+)和mPT非依赖性的重组tBID以不同方式促进BAX在线粒体外膜中的插入/寡聚化,并增加细胞色素c释放。tBID和Ca(2+)在没有线粒体的溶液中均未诱导BAX寡聚化,这表明BAX寡聚化需要与细胞器相互作用,且发生在线粒体外膜中BAX插入之后而非之前。重组Bcl-xL未能阻止BAX在线粒体外膜中的插入/寡聚化,但强烈减弱了细胞色素c释放。另一方面,还原剂二硫苏糖醇(DTT)抑制由tBID或Ca(2+)增强的BAX插入/寡聚化,并抑制BAX介导的细胞色素c和Smac/DIABLO释放,但未能抑制Ca(2+)诱导的肿胀。总之,这些数据表明,在脑线粒体中,BAX插入/寡聚化可与线粒体外膜通透性增加相分离,并且tBID和Ca(2+)通过涉及mPT诱导和SH-氧化还原状态调节的不同机制刺激BAX插入/寡聚化以及BAX介导的线粒体外膜通透性增加。

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