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2
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BAK α6 permits activation by BH3-only proteins and homooligomerization via the canonical hydrophobic groove.BAKα6 通过 BH3-仅有蛋白的激活和通过规范的疏水性沟槽的同源寡聚化来允许激活。
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本文引用的文献

1
Transient binding of an activator BH3 domain to the Bak BH3-binding groove initiates Bak oligomerization.瞬时结合激活剂 BH3 结构域到 Bak BH3 结合沟启动 Bak 寡聚化。
J Cell Biol. 2011 Jul 11;194(1):39-48. doi: 10.1083/jcb.201102027. Epub 2011 Jul 4.
2
Molecular biology of Bax and Bak activation and action.Bax和Bak激活与作用的分子生物学
Biochim Biophys Acta. 2011 Apr;1813(4):521-31. doi: 10.1016/j.bbamcr.2010.12.019. Epub 2010 Dec 30.
3
BH3-only proteins: Orchestrators of apoptosis.仅含BH3结构域的蛋白质:细胞凋亡的调控者。
Biochim Biophys Acta. 2011 Apr;1813(4):508-20. doi: 10.1016/j.bbamcr.2010.11.024. Epub 2010 Dec 10.
4
Inhibition of Bak activation by VDAC2 is dependent on the Bak transmembrane anchor.VDAC2 通过抑制 Bak 跨膜结构域的激活来发挥作用。
J Biol Chem. 2010 Nov 19;285(47):36876-83. doi: 10.1074/jbc.M110.159301. Epub 2010 Sep 17.
5
Conformational changes in BAK, a pore-forming proapoptotic Bcl-2 family member, upon membrane insertion and direct evidence for the existence of BH3-BH3 contact interface in BAK homo-oligomers.BAK(一种形成孔的促凋亡 Bcl-2 家族成员)在插入膜时的构象变化,以及 BAK 同源寡聚体中存在 BH3-BH3 接触界面的直接证据。
J Biol Chem. 2010 Sep 10;285(37):28924-37. doi: 10.1074/jbc.M110.135293. Epub 2010 Jul 6.
6
Bax forms an oligomer via separate, yet interdependent, surfaces.Bax 通过独立但相互依赖的表面形成寡聚体。
J Biol Chem. 2010 Jun 4;285(23):17614-27. doi: 10.1074/jbc.M110.113456. Epub 2010 Apr 9.
7
Molecular details of Bax activation, oligomerization, and membrane insertion.Bax 激活、寡聚化和膜插入的分子细节。
J Biol Chem. 2010 Feb 26;285(9):6636-47. doi: 10.1074/jbc.M109.081539. Epub 2009 Dec 12.
8
Bak activation for apoptosis involves oligomerization of dimers via their alpha6 helices.Bak激活诱导凋亡涉及二聚体通过其α6螺旋形成寡聚体。
Mol Cell. 2009 Nov 25;36(4):696-703. doi: 10.1016/j.molcel.2009.11.008.
9
Stepwise activation of BAX and BAK by tBID, BIM, and PUMA initiates mitochondrial apoptosis.tBID、BIM 和 PUMA 依次激活 BAX 和 BAK,启动线粒体凋亡。
Mol Cell. 2009 Nov 13;36(3):487-99. doi: 10.1016/j.molcel.2009.09.030.
10
Mechanisms by which Bak and Bax permeabilise mitochondria during apoptosis.凋亡过程中Bak和Bax使线粒体通透性改变的机制。
J Cell Sci. 2009 Aug 15;122(Pt 16):2801-8. doi: 10.1242/jcs.038166.

Bax 通过凋亡过程中的对称 BH3:groove 界面二聚化。

Bax dimerizes via a symmetric BH3:groove interface during apoptosis.

机构信息

The Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria, Australia.

出版信息

Cell Death Differ. 2012 Apr;19(4):661-70. doi: 10.1038/cdd.2011.138. Epub 2011 Oct 21.

DOI:10.1038/cdd.2011.138
PMID:22015607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3307980/
Abstract

During apoptotic cell death, Bax and Bak change conformation and homo-oligomerize to permeabilize mitochondria. We recently reported that Bak homodimerizes via an interaction between the BH3 domain and hydrophobic surface groove, that this BH3:groove interaction is symmetric, and that symmetric dimers can be linked via the α6-helices to form the high order oligomers thought responsible for pore formation. We now show that Bax also dimerizes via a BH3:groove interaction after apoptotic signaling in cells and in mitochondrial fractions. BH3:groove dimers of Bax were symmetric as dimers but not higher order oligomers could be linked by cysteine residues placed in both the BH3 and groove. The BH3:groove interaction was evident in the majority of mitochondrial Bax after apoptotic signaling, and correlated strongly with cytochrome c release, supporting its central role in Bax function. A second interface between the Bax α6-helices was implicated by cysteine linkage studies, and could link dimers to higher order oligomers. We also found that a population of Bax:Bak heterodimers generated during apoptosis formed via a BH3:groove interaction, further demonstrating that Bax and Bak oligomerize via similar mechanisms. These findings highlight the importance of BH3:groove interactions in apoptosis regulation by the Bcl-2 protein family.

摘要

在细胞凋亡过程中,Bax 和 Bak 构象发生变化,形成同源二聚体,使线粒体通透。我们最近报道,Bak 通过 BH3 结构域与疏水表面凹槽的相互作用形成同源二聚体,这种 BH3:groove 相互作用是对称的,并且对称二聚体可以通过 α6 螺旋相互连接,形成高序寡聚体,被认为是形成孔的原因。我们现在表明,在细胞和线粒体部分经历凋亡信号后,Bax 也通过 BH3:groove 相互作用形成二聚体。Bax 的 BH3:groove 二聚体作为二聚体是对称的,但通过放置在 BH3 和凹槽中的半胱氨酸残基可以连接更高阶的寡聚体。在凋亡信号后,大多数线粒体 Bax 中都存在 BH3:groove 相互作用,与细胞色素 c 释放强烈相关,支持其在 Bax 功能中的核心作用。半胱氨酸连接研究暗示了 Bax α6 螺旋之间的第二个界面,可将二聚体连接到更高阶的寡聚体。我们还发现,凋亡过程中形成的 Bax:Bak 异源二聚体通过 BH3:groove 相互作用生成,进一步表明 Bax 和 Bak 通过类似的机制形成寡聚体。这些发现强调了 BH3:groove 相互作用在 Bcl-2 蛋白家族调节凋亡中的重要性。