Institute of Microbiology, University Hospital Center and University of Lausanne, Lausanne, Switzerland.
J Virol. 2013 Jun;87(11):6406-14. doi: 10.1128/JVI.00072-13. Epub 2013 Mar 27.
The arenaviruses are an important family of emerging viruses that includes several causative agents of severe hemorrhagic fevers in humans that represent serious public health problems. A crucial step of the arenavirus life cycle is maturation of the envelope glycoprotein precursor (GPC) by the cellular subtilisin kexin isozyme 1 (SKI-1)/site 1 protease (S1P). Comparison of the currently known sequences of arenavirus GPCs revealed the presence of a highly conserved aromatic residue at position P7 relative to the SKI-1/S1P cleavage side in Old World and clade C New World arenaviruses but not in New World viruses of clades A and B or cellular substrates of SKI-1/S1P. Using a combination of molecular modeling and structure-function analysis, we found that residue Y285 of SKI-1/S1P, distal from the catalytic triad, is implicated in the molecular recognition of the aromatic "signature residue" at P7 in the GPC of Old World Lassa virus. Using a quantitative biochemical approach, we show that Y285 of SKI-1/S1P is crucial for the efficient processing of peptides derived from Old World and clade C New World arenavirus GPCs but not of those from clade A and B New World arenavirus GPCs. The data suggest that during coevolution with their mammalian hosts, GPCs of Old World and clade C New World viruses expanded the molecular contacts with SKI-1/S1P beyond the classical four-amino-acid recognition sequences and currently occupy an extended binding pocket.
沙粒病毒是一类重要的新兴病毒家族,其中包括几种能引起人类严重出血热的病原体,这些病原体对公共卫生构成严重威胁。沙粒病毒生命周期的关键步骤是细胞枯草杆菌蛋白酶/kexin 同种型 1(SKI-1)/位点 1 蛋白酶(S1P)对包膜糖蛋白前体(GPC)的成熟作用。对目前已知的沙粒病毒 GPC 序列进行比较,发现旧世界和 C 组新世沙粒病毒相对于 SKI-1/S1P 切割位点在 P7 位置存在高度保守的芳香族残基,但在 A 组和 B 组新世沙粒病毒或 SKI-1/S1P 的细胞底物中不存在。我们采用分子建模和结构功能分析相结合的方法,发现 SKI-1/S1P 上远离催化三联体的残基 Y285 参与了 SKI-1/S1P 对 Old World Lassa 病毒 GPC 中 P7 处芳香“特征残基”的分子识别。我们使用定量生化方法表明,SKI-1/S1P 的 Y285 对 Old World 和 C 组新世沙粒病毒 GPC 衍生肽的有效加工至关重要,但对 A 组和 B 组新世沙粒病毒 GPC 衍生肽的加工则不重要。这些数据表明,在与哺乳动物宿主的共同进化过程中,Old World 和 C 组新世沙粒病毒的 GPC 扩展了与 SKI-1/S1P 的分子接触,超出了经典的四氨基酸识别序列,并占据了一个扩展的结合口袋。