【2h】

Pore formation by dimeric Bak and Bax: an unusual pore?

机译:由二聚体Bak和Bax形成的孔:不寻常的孔?

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摘要

Apoptotic cell death via the mitochondrial pathway occurs in all vertebrate cells and requires the formation of pores in the mitochondrial outer membrane. Two Bcl-2 protein family members, Bak and Bax, form these pores during apoptosis, and how they do so has been investigated for the last two decades. Many of the conformation changes that occur during their transition to pore-forming proteins have now been delineated. Notably, biochemical, biophysical and structural studies indicate that symmetric homodimers are the basic unit of pore formation. Each dimer contains an extended hydrophobic surface that lies on the outer membrane, and is anchored at either end by a transmembrane domain. Membrane-remodelling events such as positive membrane curvature have been reported to accompany apoptotic pore formation, suggesting Bak and Bax form lipidic pores rather than proteinaceous pores. However, it remains unclear how symmetric dimers assemble to porate the membrane. Here, we review how clusters of dimers and their lipid-mediated interactions provide a molecular explanation for the heterogeneous assemblies of Bak and Bax observed during apoptosis.This article is part of the themed issue ‘Membrane pores: from structure and assembly, to medicine and technology’.
机译:通过线粒体途径的凋亡细胞死亡发生在所有脊椎动物细胞中,并且需要在线粒体外膜中形成孔。 Bak和Bax这两个Bcl-2蛋白家族成员在凋亡过程中形成了这些孔,并且在过去的二十年中已经研究了它们的作用方式。现在已经描述了许多过渡到成孔蛋白过程中发生的构象变化。值得注意的是,生化,生物物理和结构研究表明,对称同二聚体是孔形成的基本单元。每个二聚体均包含位于外膜上的延伸疏水表面,并通过跨膜结构域固定在任一端。据报道,膜重塑事件(例如正膜曲率)伴随着凋亡孔的形成,表明Bak和Bax形成脂质孔而不是蛋白质孔。然而,还不清楚对称的二聚体如何组装以使膜穿孔。在本文中,我们回顾了二聚体簇及其脂质介导的相互作用如何为细胞凋亡过程中观察到的Bak和Bax异质组装提供分子解释。本文是``膜孔:从结构和组装到医学和技术'。

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