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Distinct roles of mitochondria- and ER-localized Bcl-xL in apoptosis resistance and Ca2+ homeostasis

机译:线粒体和ER定位的Bcl-xL在细胞凋亡抗性和Ca2 +稳态中的不同作用

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摘要

Bcl-2 proteins are major regulators of cellular responses to intrinsic and extrinsic apoptotic stimuli. Among them, overexpression of the antiapoptotic protein Bcl-xL modulates intracellular Ca2+ homeostasis and organelle-specific apoptotic signaling pathways. However, the specific activities of Bcl-xL at mitochondria and the endoplasmic reticulum (ER) have not been fully defined. To further explore this, we generated mouse embryonic fibroblast (MEF) cell lines deficient in Bcl-xL expression (Bcl-x-KO). Deficiency in Bcl-xL expression did not induce compensatory changes in the expression of other Bcl-2 proteins, and Bcl-x-KO MEF cells showed increased sensitivity to various apoptotic stimuli compared with wild-type MEF cells. Targeting Bcl-xL at mitochondria but not at the ER restored apoptosis protection in Bcl-x-KO MEF cells to the degree observed in wild-type MEF cells. However, expression of ER-targeted Bcl-xL but not mitochondrially targeted Bcl-xL was required to restore Ca2+ homeostasis in Bcl-x-KO MEF cells. Of importance, ER-targeted Bcl-xL was able to protect cells against death stimuli in the presence of endogenous Bcl-xL. These data indicate that mitochondrial Bcl-xL can regulate apoptosis independently of ER Bcl-xL and that when localized exclusively at the ER, Bcl-xL impinges on Ca2+ homeostasis but does not affect apoptosis unless Bcl-xL is present in additional cellular compartments.
机译:Bcl-2蛋白是细胞对内在和外在凋亡刺激的反应的主要调节因子。其中,抗凋亡蛋白Bcl-xL的过表达调节细胞内Ca 2 + 稳态和细胞器特异性凋亡信号通路。但是,Bcl-xL在线粒体和内质网(ER)的比活性尚未完全定义。为了进一步探索这一点,我们生成了缺乏Bcl-xL表达(Bcl-x-KO)的小鼠胚胎成纤维细胞(MEF)细胞系。 Bcl-xL表达的不足不会诱导其他Bcl-2蛋白表达的代偿性变化,并且与野生型MEF细胞相比,Bcl-x-KO MEF细胞显示出对各种凋亡刺激的敏感性增加。将Bcl-xL靶向线粒体而不是ER,将Bcl-x-KO MEF细胞中的凋亡保护恢复到在野生型MEF细胞中观察到的程度。然而,需要ER表达的Bcl-xL而不是线粒体靶向的Bcl-xL的表达来恢复Bcl-x-KO MEF细胞的Ca 2 + 稳态。重要的是,在内源性Bcl-xL的存在下,靶向ER的Bcl-xL能够保护细胞免受死亡刺激。这些数据表明线粒体Bcl-xL可以独立于ER Bcl-xL调节凋亡,并且当仅位于ER时,Bcl-xL会影响Ca 2 + 稳态,但除非Bcl- xL存在于其他细胞隔室中。

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