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Mitochondrial proteomic approach reveals galectin-7 as a novel BCL-2 binding protein in human cells

机译:线粒体蛋白质组学方法揭示了galectin-7是人类细胞中一种新型的BCL-2结合蛋白

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摘要

Although the anti-apoptotic activity of Bcl-2 has been extensively studied, its mode of action remains incompletely understood. Deciphering the network of Bcl-2 interacting factors is necessary to better understand the key function of Bcl-2 in apoptosis initiation. To identify novel Bcl-2 mitochondrial partners, we have combined a Bcl-2 immunocapture with a mass spectrometry analysis using highly pure mitochondrial fractions isolated from human cancer cells. We identified at high confidence 127 potential Bcl-2–interacting proteins. Gene ontology mining reveals enrichment for mitochondrial proteins, endoplasmic reticulum–associated proteins, and cytoskeleton-associated proteins. Importantly, we report the identification of galectin-7 (Gal7), a member of a family of β-galactoside–binding lectins that was already known to exhibit a pro-apoptotic function, as a new mitochondrial Bcl-2 interacting partner. Our data further show that endogenous Bcl-2 coimmunoprecipitates with Gal7 and that recombinant Gal7 directly interacts with recombinant Bcl-2. A fraction of Gal7 is constitutively localized at mitochondria in a Bcl-2–dependent manner and sensitizes the mitochondria to the apoptotic signal. In addition, we show that the Bcl-2/Gal7 interaction is abolished following genotoxic stress. Taken together, our findings suggest that the binding of Gal7 to Bcl-2 may constitute a new target for enhancing the intrinsic apoptosis pathway.
机译:尽管已经广泛研究了Bcl-2的抗凋亡活性,但其作用方式仍不完全清楚。解密Bcl-2相互作用因子的网络对于更好地了解Bcl-2在凋亡启动中的关键功能是必要的。为了鉴定新的Bcl-2线粒体伴侣,我们将Bcl-2免疫捕获技术与质谱分析相结合,使用了从人类癌细胞中分离出的高纯度线粒体级分。我们以高可信度鉴定了127种潜在的Bcl-2相互作用蛋白。基因本体挖掘揭示了线粒体蛋白,内质网相关蛋白和细胞骨架相关蛋白的富集。重要的是,我们报告鉴定出半乳糖凝集素7(Gal7)是一种新的线粒体Bcl-2相互作用伴侣,该半乳糖凝集素β-半乳糖苷结合凝集素家族的成员已被证实具有促凋亡功能。我们的数据进一步表明,内源性Bcl-2与Gal7共免疫沉淀,而重组Gal7与重组Bcl-2直接相互作用。 Gal7的一部分以Bcl-2依赖性的方式组成性地位于线粒体,并使线粒体对凋亡信号敏感。此外,我们表明遗传毒性应激后,Bcl-2 / Gal7相互作用被取消。综上,我们的发现表明,Gal7与Bcl-2的结合可能构成增强内在凋亡途径的新靶标。

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