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一种来自 OTU 家族的紧凑型病毒加工蛋白酶/泛素水解酶。

A compact viral processing proteinase/ubiquitin hydrolase from the OTU family.

机构信息

The Laboratoire de Virologie Moléculaire et Structurale, Centre de Recherche de Gif, CNRS (UPR 3296), Gif sur Yvette, France.

出版信息

PLoS Pathog. 2013 Aug;9(8):e1003560. doi: 10.1371/journal.ppat.1003560. Epub 2013 Aug 15.

Abstract

Turnip yellow mosaic virus (TYMV)--a member of the alphavirus-like supergroup of viruses--serves as a model system for positive-stranded RNA virus membrane-bound replication. TYMV encodes a precursor replication polyprotein that is processed by the endoproteolytic activity of its internal cysteine proteinase domain (PRO). We recently reported that PRO is actually a multifunctional enzyme with a specific ubiquitin hydrolase (DUB) activity that contributes to viral infectivity. Here, we report the crystal structure of the 150-residue PRO. Strikingly, PRO displays no homology to other processing proteinases from positive-stranded RNA viruses, including that of alphaviruses. Instead, the closest structural homologs of PRO are DUBs from the Ovarian tumor (OTU) family. In the crystal, one molecule's C-terminus inserts into the catalytic cleft of the next, providing a view of the N-terminal product complex in replication polyprotein processing. This allows us to locate the specificity determinants of PRO for its proteinase substrates. In addition to the catalytic cleft, at the exit of which the active site is unusually pared down and solvent-exposed, a key element in molecular recognition by PRO is a lobe N-terminal to the catalytic domain. Docking models and the activities of PRO and PRO mutants in a deubiquitylating assay suggest that this N-terminal lobe is also likely involved in PRO's DUB function. Our data thus establish that DUBs can evolve to specifically hydrolyze both iso- and endopeptide bonds with different sequences. This is achieved by the use of multiple specificity determinants, as recognition of substrate patches distant from the cleavage sites allows a relaxed specificity of PRO at the sites themselves. Our results thus shed light on how such a compact protein achieves a diversity of key functions in viral genome replication and host-pathogen interaction.

摘要

芜菁黄花叶病毒(TYMV)——一种正链 RNA 病毒样超家族病毒——是正链 RNA 病毒膜结合复制的模式系统。TYMV 编码一个前体复制多蛋白,该蛋白被其内部半胱氨酸蛋白酶结构域(PRO)的内切蛋白酶活性加工。我们最近报道,PRO 实际上是一种多功能酶,具有特定的泛素水解酶(DUB)活性,有助于病毒感染力。在这里,我们报告了 150 个残基 PRO 的晶体结构。引人注目的是,PRO 与正链 RNA 病毒的其他加工蛋白酶(包括甲病毒)没有同源性。相反,PRO 的最接近的结构同源物是卵巢肿瘤(OTU)家族的 DUB。在晶体中,一个分子的 C 末端插入到下一个分子的催化裂缝中,提供了复制多蛋白加工中 N 末端产物复合物的视图。这使我们能够定位 PRO 对其蛋白酶底物的特异性决定因素。除了催化裂缝外,在活性位点异常缩小并暴露于溶剂的出口处,PRO 进行分子识别的一个关键元素是催化结构域前面的一个叶。对接模型和 PRO 及其 PRO 突变体在去泛素化测定中的活性表明,这个 N 末端叶也可能参与 PRO 的 DUB 功能。我们的数据因此确立了 DUB 可以进化为特异性水解具有不同序列的同肽和内肽键。这是通过使用多个特异性决定因素来实现的,因为识别与切割位点远离的底物斑块允许 PRO 在自身位点上具有较宽松的特异性。我们的结果因此阐明了如此紧凑的蛋白质如何在病毒基因组复制和宿主-病原体相互作用中实现多种关键功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/682f/3744425/900eac4e9ae1/ppat.1003560.g001.jpg

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