核糖核酸
劈理(地质)
病毒学
核糖核酸酶P
基因组
生物
核糖核酸酶H
丙型肝炎病毒
病毒
化学
分子生物学
遗传学
基因
古生物学
断裂(地质)
作者
Anna Nadal,María Martell,J. Robin Lytle,Alita J. Lyons,Hugh M. Robertson,Beatriz Cabot,Juan Ignacio Esteban,Rafael Esteban,Jaime Guardia,Jordi Gómez
标识
DOI:10.1074/jbc.m203595200
摘要
We have found that RNase P from HeLa cells specifically and efficiently cleaves hepatitis C virus (HCV) transcripts in vitro. The evidence includes identification of the 5'-phosphate polarity of the newly generated termini at position A(2860) as well as immunological and biochemical assays. Active cleavage has been shown in five dominant sequences of HCV quasispecies differing at or near the position of cleavage, demonstrating that this is a general property of HCV RNA. During the analysis, a second cleavage event was found in the 3' domain of the internal ribosome entry site. We have found that HCV RNA competitively inhibits pre-tRNA cleavage by RNase P, suggesting that HCV RNA has structural similarities to tRNA. This finding sets HCV apart from other pathogens causing serious human diseases and represents the first description of human RNase P-viral RNA cleavage. Here we discuss the possible meaning of these RNase P-accessible structures built into the viral genome and their possible role in vivo. Moreover, such structures within the viral genome might be vulnerable to attack by therapeutic strategies.
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