Bcl-xL regulates mitochondrial energetics by stabilizing the inner membrane potential

Bcl-xL 通过稳定内膜电位来调节线粒体能量

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作者:Ying-Bei Chen, Miguel A Aon, Yi-Te Hsu, Lucian Soane, Xinchen Teng, J Michael McCaffery, Wen-Chih Cheng, Bing Qi, Hongmei Li, Kambiz N Alavian, Margaret Dayhoff-Brannigan, Shifa Zou, Fernando J Pineda, Brian O'Rourke, Young H Ko, Peter L Pedersen, Leonard K Kaczmarek, Elizabeth A Jonas, J Marie Hard

Abstract

Mammalian Bcl-x(L) protein localizes to the outer mitochondrial membrane, where it inhibits apoptosis by binding Bax and inhibiting Bax-induced outer membrane permeabilization. Contrary to expectation, we found by electron microscopy and biochemical approaches that endogenous Bcl-x(L) also localized to inner mitochondrial cristae. Two-photon microscopy of cultured neurons revealed large fluctuations in inner mitochondrial membrane potential when Bcl-x(L) was genetically deleted or pharmacologically inhibited, indicating increased total ion flux into and out of mitochondria. Computational, biochemical, and genetic evidence indicated that Bcl-x(L) reduces futile ion flux across the inner mitochondrial membrane to prevent a wasteful drain on cellular resources, thereby preventing an energetic crisis during stress. Given that F(1)F(O)-ATP synthase directly affects mitochondrial membrane potential and having identified the mitochondrial ATP synthase β subunit in a screen for Bcl-x(L)-binding partners, we tested and found that Bcl-x(L) failed to protect β subunit-deficient yeast. Thus, by bolstering mitochondrial energetic capacity, Bcl-x(L) may contribute importantly to cell survival independently of other Bcl-2 family proteins.

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