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tBID诱导大鼠脑线粒体细胞色素c释放的两条途径:依赖BAK与依赖BAX。

Two pathways for tBID-induced cytochrome c release from rat brain mitochondria: BAK- versus BAX-dependence.

作者信息

Brustovetsky Nickolay, Dubinsky Janet M, Antonsson Bruno, Jemmerson Ronald

机构信息

Department of Neuroscience, University of Minnesota, Minneapolis 55455, USA.

出版信息

J Neurochem. 2003 Jan;84(1):196-207. doi: 10.1046/j.1471-4159.2003.01545.x.

Abstract

The mechanisms of truncated BID (tBID)-induced Cyt c release from non-synaptosomal brain mitochondria were examined. Addition of tBID to mitochondria induced partial Cyt c release which was inhibited by anti-BAK antibodies, implicating BAK. Immunoblotting showed the presence of BAK, but not BAX, in brain mitochondria. tBID did not release Cyt c from rat liver mitochondria, which lacked both BAX and BAK. This indicated that tBID did not act independently of BAX and BAK. tBID plus monomeric BAX produced twice as much Cyt c release as did tBID or oligomeric BAX alone. Neither tBID alone nor in combination with BAX induced mitochondrial swelling. In both cases Cyt c release was insensitive to cyclosporin A plus ADP, inhibitors of the mitochondrial permeability transition (mPT). Recombinant Bcl-xL inhibited Cyt c release induced by tBID alone or in combination with monomeric BAX. Koenig's polyanion, an inhibitor of VDAC, suppressed tBID-induced Cyt c release from brain mitochondria mediated by BAK but not by BAX. Thus, tBID can induce mPT-independent Cyt c release from brain mitochondria by interacting with exogenous BAX and/or with endogenous BAK that may involve VDAC. In contrast, neither adenylate kinase nor Smac/DIABLO was released from isolated rat brain mitochondria via BAK or BAX.

摘要

研究了截短型BID(tBID)诱导非突触体脑线粒体释放细胞色素C(Cyt c)的机制。向线粒体中添加tBID可诱导部分Cyt c释放,抗BAK抗体可抑制这种释放,提示BAK参与其中。免疫印迹显示脑线粒体中存在BAK,但不存在BAX。tBID不能从缺乏BAX和BAK的大鼠肝线粒体中释放Cyt c。这表明tBID的作用并非独立于BAX和BAK。tBID与单体BAX共同作用时诱导的Cyt c释放量是单独使用tBID或寡聚体BAX时的两倍。单独的tBID或其与BAX联合使用均未诱导线粒体肿胀。在这两种情况下,Cyt c释放对线粒体通透性转换(mPT)抑制剂环孢素A加ADP均不敏感。重组Bcl-xL可抑制单独的tBID或其与单体BAX联合诱导的Cyt c释放。孔蛋白(VDAC)抑制剂柯尼格多聚阴离子可抑制tBID诱导的、由BAK介导而非BAX介导的脑线粒体Cyt c释放。因此,tBID可通过与外源性BAX和/或内源性BAK相互作用,诱导脑线粒体发生不依赖mPT的Cyt c释放,这一过程可能涉及VDAC。相比之下,腺苷酸激酶和Smac/DIABLO均不会通过BAK或BAX从分离的大鼠脑线粒体中释放。

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