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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >The Bax carboxy-terminal hydrophobic helix does not determine organelle-specific targeting but is essential for maintaining Bax in an inactive state and for stable mitochondrial membrane insertion
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The Bax carboxy-terminal hydrophobic helix does not determine organelle-specific targeting but is essential for maintaining Bax in an inactive state and for stable mitochondrial membrane insertion

机译:Bax羧基末端疏水螺旋无法确定细胞器特异性靶向,但对于维持Bax处于非活性状态和稳定的线粒体膜插入至关重要

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Here we address the function of the hydrophobic carboxy-terminal tail of the pro-apoptotic protein Bax. The tail is tucked into a hydrophobic pocket within the closed/inactive conformation of Bax. Apoptotic stimulation changes the Bax conformation, exposing a mitochondrial- targeting signal. We confirmed that the Bax tail alone can specifically target and anchor a passenger protein to the mitochondria. Surprisingly, we determined that the Bax tail does not play the primary targeting role in Bax mitochondrial translocation. Mutating the Bax tail to produce an ER-targeting signal had no effect on Bax mitochondrial targeting. Additionally, we demonstrated that the Bax tail has a negative regulatory effect on Bax activation. Mutations that disrupt the tail interactions with the hydrophobic pocket resulted in constitutive activation and mitochondrial targeting. Deletion of the Bax tail also resulted in an active conformation of Bax, however, mitochondrial targeting was abolished. Thus, the Bax tail is required for mitochondrial translocation. By generating a mutant-tail that cannot insert into membrane, we determined that insertion of the Bax tail is required for Bax mitochondrial targeting. Our data support a model whereby the Bax tail must be released from the pocket for activation of Bax, then functions as an anchor to stabilize Bax at the mitochondrial membrane after the initial addressing step.
机译:在这里,我们解决了促凋亡蛋白Bax的疏水性羧基末端尾巴的功能。将尾巴塞入Bax封闭/非活性构象内的疏水袋中。凋亡刺激改变了Bax构象,暴露了线粒体靶向信号。我们证实,单独的Bax尾巴可以特异性地靶向并将客运蛋白锚定到线粒体。出人意料的是,我们确定Bax尾巴在Bax线粒体易位中不发挥主要的靶向作用。突变Bax尾巴以产生ER靶向信号对Bax线粒体靶向没有影响。此外,我们证明了Bax尾巴对Bax激活具有负面的调节作用。破坏尾巴与疏水性口袋相互作用的突变导致组成性激活和线粒体靶向。 Bax尾巴的删除也导致Bax的主动构象,但是,线粒体靶向被废除了。因此,线粒体易位需要Bax尾巴。通过生成无法插入膜的突变尾,我们确定Bax线粒体靶向需要插入Bax尾巴。我们的数据支持一种模型,该模型必须从口袋中释放Bax尾巴以激活Bax,然后在初始寻址步骤后充当锚来稳定Bax在线粒体膜上。

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