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RNA remodeling by hexameric RNA helicases

机译:通过六聚体RNA解旋酶进行RNA重塑

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摘要

The unwinding of RNA helices and the disruption of RNA-protein complexes are critical steps of cellular metabolism that are carried out by ubiquitous NTP-dependent enzymes named RNA helicases. Here, we review the structures, mechanisms and biochemical properties of two RNA helicases known to adopt a homo-hexameric ring architecture: the P4 packaging motor of bacteriophage PHI8 a Super-Family 4 helicase and Escherichia coli's transcription termination factor Rho from the Super-Family 5 of helicases. We emphasize the many similarities as well as key differences that characterize the Rho and P4 motor mechanisms and highlight important questions that remain to be addressed.
机译:RNA螺旋的解开和RNA-蛋白质复合物的破坏是细胞代谢的关键步骤,这是通过无处不在的NTP依赖性酶(称为RNA解旋酶)进行的。在这里,我们审查两种已知采用同六聚体环结构的RNA解旋酶的结构,机理和生化特性:噬菌体PHI8的P4包装马达,超家族4解旋酶和超家族的大肠杆菌转录终止因子Rho 5种解旋酶。我们强调了Rho和P4电机机构的许多相似之处和主要区别,并强调了有待解决的重要问题。

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