聚合酶
生物
磷蛋白
核糖核酸
病毒学
病毒复制
RNA聚合酶
RNA依赖性RNA聚合酶
细胞生物学
病毒
遗传学
DNA
基因
作者
Julien Sourimant,Vidhi D. Thakkar,Robert M. Cox,Richard K. Plemper
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2020-03-05
卷期号:6 (10)
被引量:15
标识
DOI:10.1126/sciadv.aaz1590
摘要
Paramyxoviruses are negative-polarity RNA viruses of major clinical importance. The dynamic interaction of the RNA-dependent RNA polymerase (RdRP) complex with the encapsidated RNA genome is mechanistically and structurally poorly understood. Having generated recombinant measles (MeV) and canine distemper (CDV) viruses with truncated nucleocapsid (N) protein showing defects in replication kinetics, we have applied a viral evolution approach to the problem. Passaging of recombinants resulted in long-range compensatory mutations that restored RdRP bioactivity in minigenome assays and efficient replication of engineered viruses. Compensatory mutations clustered at an electronically compatible acidic loop in N-core and a basic face of the phosphoprotein X domain (P-XD). Co-affinity precipitations, biolayer interferometry, and molecular docking revealed an electrostatic-driven transiently forming interface between these domains. The compensatory mutations reduced electrostatic compatibility of these microdomains and lowered coprecipitation efficiency, consistent with a molecular checkpoint function that regulates paramyxovirus polymerase mobility through modulation of conformational stability of the P-XD assembly.
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