Department of Plant Pathology, University of Kentucky, Lexington, Kentucky, United States of America.
PLoS Pathog. 2012 Feb;8(2):e1002491. doi: 10.1371/journal.ppat.1002491. Epub 2012 Feb 9.
Replication of plus-stranded RNA viruses is greatly affected by numerous host-coded proteins acting either as susceptibility or resistance factors. Previous genome-wide screens and global proteomics approaches with Tomato bushy stunt tombusvirus (TBSV) in a yeast model host revealed the involvement of cyclophilins, which are a large family of host prolyl isomerases, in TBSV replication. In this paper, we identified those members of the large cyclophilin family that interacted with the viral replication proteins and inhibited TBSV replication. Further characterization of the most effective cyclophilin, the Cyp40-like Cpr7p, revealed that it strongly inhibits many steps during TBSV replication in a cell-free replication assay. These steps include viral RNA recruitment inhibited via binding of Cpr7p to the RNA-binding region of the viral replication protein; the assembly of the viral replicase complex and viral RNA synthesis. Since the TPR (tetratricopeptide repeats) domain, but not the catalytic domain of Cpr7p is needed for the inhibitory effect on TBSV replication, it seems that the chaperone activity of Cpr7p provides the negative regulatory function. We also show that three Cyp40-like proteins from plants can inhibit TBSV replication in vitro and Cpr7p is also effective against Nodamura virus, an insect pathogen. Overall, the current work revealed a role for Cyp40-like proteins and their TPR domains as regulators of RNA virus replication.
正链 RNA 病毒的复制受到许多宿主编码蛋白的极大影响,这些蛋白既可以作为易感性因素,也可以作为抗性因素。以前使用番茄丛矮病毒(TBSV)在酵母模型宿主中的全基因组筛选和全球蛋白质组学方法发现,亲环素(cyclophilins)参与了 TBSV 的复制,亲环素是一大类宿主脯氨酰异构酶。在本文中,我们鉴定了与病毒复制蛋白相互作用并抑制 TBSV 复制的大亲环素家族的成员。对最有效的亲环素 Cyp40 样 Cpr7p 的进一步表征表明,它在无细胞复制测定中强烈抑制 TBSV 复制的许多步骤。这些步骤包括通过 Cpr7p 与病毒复制蛋白的 RNA 结合区域结合抑制病毒 RNA 的募集;病毒复制酶复合物的组装和病毒 RNA 的合成。由于 Cpr7p 对 TBSV 复制的抑制作用不需要 TPR(四肽重复)结构域,而不是催化结构域,因此似乎 Cpr7p 的伴侣活性提供了负调节功能。我们还表明,来自植物的三种 Cyp40 样蛋白可以在体外抑制 TBSV 复制,并且 Cpr7p 对昆虫病原体 Nodamura 病毒也有效。总的来说,目前的工作揭示了 Cyp40 样蛋白及其 TPR 结构域作为 RNA 病毒复制调节剂的作用。