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Structural biology of the Bcl-2 family and its mimicry by viral proteins

机译:Bcl-2家族的结构生物学及其病毒蛋白的模仿

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Intrinsic apoptosis in mammals is regulated by protein–protein interactions among the B-cell lymphoma-2 (Bcl-2) family. The sequences, structures and binding specificity between pro-survival Bcl-2 proteins and their pro-apoptotic Bcl-2 homology 3 motif only (BH3-only) protein antagonists are now well understood. In contrast, our understanding of the mode of action of Bax and Bak, the two necessary proteins for apoptosis is incomplete. Bax and Bak are isostructural with pro-survival Bcl-2 proteins and also interact with BH3-only proteins, albeit weakly. Two sites have been identified; the in-groove interaction analogous to the pro-survival BH3-only interaction and a site on the opposite molecular face. Interaction of Bax or Bak with activator BH3-only proteins and mitochondrial membranes triggers a series of ill-defined conformational changes initiating their oligomerization and mitochondrial outer membrane permeabilization. Many actions of the mammalian pro-survival Bcl-2 family are mimicked by viruses. By expressing proteins mimicking mammalian pro-survival Bcl-2 family proteins, viruses neutralize death-inducing members of the Bcl-2 family and evade host cell apoptosis during replication. Remarkably, structural elements are preserved in viral Bcl-2 proteins even though there is in many cases little discernible sequence conservation with their mammalian counterparts. Some viral Bcl-2 proteins are dimeric, but they have distinct structures to those observed for mammalian Bcl-2 proteins. Furthermore, viral Bcl-2 proteins modulate innate immune responses regulated by NF- κ B through an interface separate from the canonical BH3-binding groove. Our increasing structural understanding of the viral Bcl-2 proteins is leading to new insights in the cellular Bcl-2 network by exploring potential alternate functional modes in the cellular context. We compare the cellular and viral Bcl-2 proteins and discuss how alterations in their structure, sequence and binding specificity lead to differences in behavior, and together with the intrinsic structural plasticity in the Bcl-2 fold enable exquisite control over critical cellular signaling pathways.
机译:哺乳动物的内在凋亡受B细胞淋巴瘤2(Bcl-2)家族之间的蛋白质相互作用调节。现在已经很好地理解了存活前Bcl-2蛋白与其仅凋亡前Bcl-2同源性3基序(仅BH3)蛋白拮抗剂之间的序列,结构和结合特异性。相比之下,我们对Bax和Bak的作用方式的了解,凋亡的两种必需蛋白质是不完整的。 Bax和Bak与生存前的Bcl-2蛋白同构,并且还与仅BH3的蛋白相互作用,尽管作用较弱。已经确定了两个地点;槽内相互作用类似于仅存活前的BH3相互作用,并且在相反的分子面上有一个位点。 Bax或Bak与仅激活剂BH3的蛋白质和线粒体膜的相互作用触发了一系列不确定的构象变化,从而引发了它们的低聚和线粒体外膜通透化。哺乳动物模仿生存的Bcl-2家族的许多行为都被病毒模仿。通过表达模仿哺乳动物存活前Bcl-2家族蛋白的蛋白,病毒可中和Bcl-2家族的诱导死亡成员并在复制过程中逃避宿主细胞的凋亡。值得注意的是,即使在许多情况下,与它们的哺乳动物对应物之间几乎没有可辨别的序列保守性,病毒Bcl-2蛋白中仍保留了结构元件。一些病毒Bcl-2蛋白是二聚体,但与哺乳动物Bcl-2蛋白所观察到的结构不同。此外,病毒Bcl-2蛋白通过与规范性BH3结合沟分开的界面调节由NF-κB调节的先天免疫应答。通过对细胞背景中潜在的替代功能模式的探索,我们对病毒Bcl-2蛋白的结构性认识不断增强,从而在细胞Bcl-2网络中获得了新的见识。我们比较细胞和病毒的Bcl-2蛋白质,并讨论它们的结构,序列和结合特异性的变化如何导致行为差异,以及Bcl-2折叠中固有的结构可塑性使对关键细胞信号通路的控制更为精确。

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