首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Apoptotic pore formation is associated with in-plane insertion of Bak or Bax central helices into the mitochondrial outer membrane
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PNAS Plus: Apoptotic pore formation is associated with in-plane insertion of Bak or Bax central helices into the mitochondrial outer membrane

机译:PNAS Plus:凋亡孔的形成与Bak或Bax中心螺旋在面内插入线粒体外膜有关

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摘要

The pivotal step on the mitochondrial pathway to apoptosis is permeabilization of the mitochondrial outer membrane (MOM) by oligomers of the B-cell lymphoma-2 (Bcl-2) family members Bak or Bax. However, how they disrupt MOM integrity is unknown. A longstanding model is that activated Bak and Bax insert two α-helices, α5 and α6, as a hairpin across the MOM, but recent insights on the oligomer structures question this model. We have clarified how these helices contribute to MOM perforation by determining that, in the oligomers, Bak α5 (like Bax α5) remains part of the protein core and that a membrane-impermeable cysteine reagent can label cysteines placed at many positions in α5 and α6 of both Bak and Bax. The results are inconsistent with the hairpin insertion model but support an in-plane model in which α5 and α6 collapse onto the membrane and insert shallowly to drive formation of proteolipidic pores.
机译:线粒体途径凋亡的关键步骤是B细胞淋巴瘤2(Bcl-2)家庭成员Bak或Bax的寡聚体透化线粒体外膜(MOM)。但是,它们如何破坏MOM完整性尚不清楚。长期存在的模型是活化的Bak和Bax插入两个α-螺旋,即α5和α6,作为整个MOM的发夹,但有关低聚物结构的最新见解对该模型提出了质疑。我们通过确定在低聚物中Bakα5(如Baxα5)仍然是蛋白质核心的一部分,并且膜不可渗透的半胱氨酸试剂可以标记位于α5和α6中许多位置的半胱氨酸,从而阐明了这些螺旋如何促进MOM穿孔。 Bak和Bax。结果与发夹插入模型不一致,但支持平面模型,其中α5和α6塌陷到膜上并浅插入以驱动蛋白脂孔的形成。

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