首页> 美国卫生研究院文献>The Journal of Biological Chemistry >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
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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

机译:BAK孔形成凋亡的Bcl-2家族成员的构象变化在膜插入和BAK同源寡聚体中存在BH3-BH3接触界面的直接证据后。

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摘要

During apoptosis, the pro-apoptotic Bcl-2 family proteins BAK and BAX form large oligomeric pores in the mitochondrial outer membrane. Apoptotic factors, including cytochrome c, are released through these pores from the mitochondrial intermembrane space into the cytoplasm where they initiate the cascade of events leading to cell death. To better understand this pivotal step toward apoptosis, a method was developed to induce membrane permeabilization by BAK in the membrane without using the full-length protein. Using a soluble form of BAK with a hexahistidine tag at the C terminus and a liposomal system containing the Ni2+-nitrilotriacetic acid lipid analog that can bind hexahistidine-tagged proteins, BAK oligomers were formed in the presence of the activator protein p7/p15Bid. In this system, we determined the conformational changes in BAK upon membrane insertion by applying the site-directed spin labeling method of EPR to 13 different amino acid locations. Upon membrane insertion, the BH3 domains were reorganized, and the α5-α6 helical hairpin structure was partially exposed to the membrane environment. The monomer-monomer interface in the oligomeric structure was also mapped by measuring the distance-dependent spin-spin interactions for each residue location. Spin labels attached in the BH3 domain were juxtaposed within 5–10 Å distance in the oligomeric form in the membrane. These results are consistent with the current hypothesis that BAK or BAX forms homodimers, and these homodimers assemble into a higher order oligomeric pore. Detailed analyses of the data provide new insights into the structure of the BAX or BAK homodimer.
机译:在凋亡过程中,促凋亡的Bcl-2家族蛋白BAK和BAX在线粒体外膜上形成大的寡聚孔。凋亡因子,包括细胞色素c,通过这些孔从线粒体膜间空间释放到细胞质中,在那里它们引发导致细胞死亡的一系列事件。为了更好地理解这一通往凋亡的关键步骤,开发了一种在不使用全长蛋白的情况下通过BAK诱导膜透化的方法。使用在C端带有六组氨酸标签的BAK可溶性形式和包含可结合六组氨酸标签蛋白的Ni 2 + -亚硝基三乙酸脂类似物的脂质体系统,在存在下形成BAK低聚物激活蛋白p7 / p15Bid的表达。在该系统中,我们通过将EPR的定点自旋标记方法应用于13个不同的氨基酸位置,确定了膜插入后BAK的构象变化。插入膜后,BH3结构域重组,α5-α6螺旋发夹结构部分暴露于膜环境。还通过测量每个残基位置的距离依赖性自旋-自旋相互作用来绘制低聚物结构中的单体-单体界面。附着在BH3结构域中的自旋标记在膜中以寡聚形式并列在5-10Å距离内。这些结果与当前的假设一致,即BAK或BAX形成同二聚体,并且这些同二聚体组装成更高阶的低聚孔。数据的详细分析为BAX或BAK同型二聚体的结构提供了新的见解。

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