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Structure of the foot-and-mouth disease virus leader protease: a papain-like fold adapted for self-processing and eIF4G recognition.

机译:口蹄疫病毒前导蛋白酶的结构:一种木瓜样折叠适合自我加工和eIF4G识别。

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摘要

The leader protease of foot-and-mouth disease virus, as well as cleaving itself from the nascent viral polyprotein, disables host cell protein synthesis by specific proteolysis of a cellular protein: the eukaryotic initiation factor 4G (eIF4G). The crystal structure of the leader protease presented here comprises a globular catalytic domain reminiscent of that of cysteine proteases of the papain superfamily, and a flexible C-terminal extension found intruding into the substrate-binding site of an adjacent molecule. Nevertheless, the relative disposition of this extension and the globular domain to each other supports intramolecular self-processing. The different sequences of the two substrates cleaved during viral replication, the viral polyprotein (at LysLeuLys/GlyAlaGly) and eIF4G (at AsnLeuGly/ArgThrThr), appear to be recognized by distinct features in a narrow, negatively charged groove traversing the active centre. The structure illustrates how the prototype papain fold has been adapted to the requirements of an RNA virus. Thus, the protein scaffold has been reduced to a minimum core domain, with the active site being modified to increase specificity. Furthermore, surface features have been developed which enable C-terminal self-processing from the viral polyprotein.
机译:口蹄疫病毒的先导蛋白酶,以及从新生的病毒多聚蛋白上裂解下来,会通过细胞蛋白的特异性蛋白水解:真核起始因子4G(eIF4G)禁用宿主细胞蛋白的合成。此处介绍的前导蛋白酶的晶体结构包含一个球形催化结构域,让人联想到木瓜蛋白酶超家族的半胱氨酸蛋白酶,还有一个柔性的C端延伸进入相邻分子的底物结合位点。然而,这种延伸和球状结构域的相对位置支持分子内的自我加工。病毒复制过程中裂解的两种底物的不同序列,病毒多蛋​​白(在LysLeuLys / GlyAlaGly)和eIF4G(在AsnLeuGly / ArgThrThr),似乎在横穿活性中心的狭窄,带负电荷的凹槽中被不同的特征所识别。该结构说明了木瓜蛋白酶的原型折叠如何适应RNA病毒的要求。因此,蛋白质支架已经减少到最小核心结构域,其中活性位点被修饰以增加特异性。此外,已经开发了能够从病毒多蛋白进行C末端自我加工的表面特征。

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