生物
核糖核酸
病毒学
登革热
丙型肝炎病毒
黄病毒科
基因组
登革热病毒
病毒复制
黄病毒
RNA依赖性RNA聚合酶
病毒
遗传学
基因
作者
Nandan S. Gokhale,Alexa B. R. McIntyre,Michael J. McFadden,Allison Roder,Edward M. Kennedy,Jorge Gandara,Sharon E. Hopcraft,Kendra M. Quicke,Christine Vazquez,Jason R. Willer,Olga Ilkayeva,Brittany A. Law,Christopher L. Holley,Mariano A. García-Blanco,Matthew J. Evans,Mehul S. Suthar,Shelton S. Bradrick,Christopher E. Mason,Stacy M. Horner
标识
DOI:10.1016/j.chom.2016.09.015
摘要
The RNA modification N6-methyladenosine (m6A) post-transcriptionally regulates RNA function. The cellular machinery that controls m6A includes methyltransferases and demethylases that add or remove this modification, as well as m6A-binding YTHDF proteins that promote the translation or degradation of m6A-modified mRNA. We demonstrate that m6A modulates infection by hepatitis C virus (HCV). Depletion of m6A methyltransferases or an m6A demethylase, respectively, increases or decreases infectious HCV particle production. During HCV infection, YTHDF proteins relocalize to lipid droplets, sites of viral assembly, and their depletion increases infectious viral particles. We further mapped m6A sites across the HCV genome and determined that inactivating m6A in one viral genomic region increases viral titer without affecting RNA replication. Additional mapping of m6A on the RNA genomes of other Flaviviridae, including dengue, Zika, yellow fever, and West Nile virus, identifies conserved regions modified by m6A. Altogether, this work identifies m6A as a conserved regulatory mark across Flaviviridae genomes.
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