Kirchdoerfer Robert N, Moyer Crystal L, Abelson Dafna M, Saphire Erica Ollmann
Department of Immunology and Microbial Sciences, The Scripps Research Institute, La Jolla, California, United States of America.
Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, California, United States of America.
PLoS Pathog. 2016 Oct 18;12(10):e1005937. doi: 10.1371/journal.ppat.1005937. eCollection 2016 Oct.
Filoviruses are capable of causing deadly hemorrhagic fevers. All nonsegmented negative-sense RNA-virus nucleocapsids are composed of a nucleoprotein (NP), a phosphoprotein (VP35) and a polymerase (L). However, the VP30 RNA-synthesis co-factor is unique to the filoviruses. The assembly, structure, and function of the filovirus RNA replication complex remain unclear. Here, we have characterized the interactions of Ebola, Sudan and Marburg virus VP30 with NP using in vitro biochemistry, structural biology and cell-based mini-replicon assays. We have found that the VP30 C-terminal domain interacts with a short peptide in the C-terminal region of NP. Further, we have solved crystal structures of the VP30-NP complex for both Ebola and Marburg viruses. These structures reveal that a conserved, proline-rich NP peptide binds a shallow hydrophobic cleft on the VP30 C-terminal domain. Structure-guided Ebola virus VP30 mutants have altered affinities for the NP peptide. Correlation of these VP30-NP affinities with the activity for each of these mutants in a cell-based mini-replicon assay suggests that the VP30-NP interaction plays both essential and inhibitory roles in Ebola virus RNA synthesis.
丝状病毒能够引发致命的出血热。所有非节段性负链RNA病毒核衣壳均由核蛋白(NP)、磷蛋白(VP35)和聚合酶(L)组成。然而,VP30 RNA合成辅助因子是丝状病毒所特有的。丝状病毒RNA复制复合体的组装、结构和功能仍不清楚。在此,我们利用体外生物化学、结构生物学和基于细胞的微型复制子试验,对埃博拉病毒、苏丹病毒和马尔堡病毒的VP30与NP之间的相互作用进行了表征。我们发现VP30的C末端结构域与NP C末端区域的一个短肽相互作用。此外,我们解析了埃博拉病毒和马尔堡病毒VP30-NP复合体的晶体结构。这些结构表明,一个保守的、富含脯氨酸的NP肽结合在VP30 C末端结构域上一个浅的疏水裂缝中。基于结构的埃博拉病毒VP30突变体对NP肽的亲和力发生了改变。在基于细胞的微型复制子试验中,这些VP30-NP亲和力与每个突变体的活性之间的相关性表明,VP30-NP相互作用在埃博拉病毒RNA合成中既起关键作用,也起抑制作用。