首页> 美国卫生研究院文献>Journal of Virology >The QRxGRxGRxxxG motif of the vaccinia virus DExH box RNA helicase NPH-II is required for ATP hydrolysis and RNA unwinding but not for RNA binding.
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The QRxGRxGRxxxG motif of the vaccinia virus DExH box RNA helicase NPH-II is required for ATP hydrolysis and RNA unwinding but not for RNA binding.

机译:痘苗病毒DExH盒RNA解旋酶NPH-II的QRxGRxGRxxxG基序对于ATP水解和RNA解链而言是必需的但对于RNA结合则不是。

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摘要

Vaccinia virus NPH-II is an essential nucleic acid-dependent nucleoside triphosphate that catalyzes unidirectional unwinding of duplex RNA containing a 3' tail. NPH-II is the prototypal RNA helicase of the DExH box protein family, which is defined by several shared sequence motifs. The contribution of the conserved QRKGRVGRVNPG region to enzyme activity was assessed by alanine-scanning mutagenesis. Ten mutated versions of NPH-II were expressed in vaccinia virus-infected BSC-40 cells and purified by nickel affinity chromatography and glycerol gradient sedimentation. The mutated proteins were characterized with respect to RNA helicase, nucleic acid-dependent ATPase, and RNA binding functions. Individual alanine substitutions at invariant residues Q-491, G-494, R-495, G-497, R-498, and G-502 caused severe defects in RNA unwinding that correlated with reduced rates of ATP hydrolysis. None of these mutations affected the binding of NPH-II to single-strand RNA or to the tailed duplex RNA used as a helicase substrate. Mutation of the strictly conserved position R-492 inhibited ATPase and helicase activities and also caused a modest decrement in RNA binding. Alanine mutations at the nonconserved position N-500 and the weakly conserved residue P-501 had no apparent effect on any activity associated with NPH-II, whereas a mutation at the weakly conserved position K-493 reduced helicase to one-third and ATPase to two-thirds of the activity of wild-type required for ATP hydrolysis and RNA unwinding but not for RNA binding. Because mutations in the HRxGRxxR motif of the prototypal DEAD box RNA helicase eIF-4A abolish or severely inhibit RNA binding, we surmise that the contribution of conserved helicase motifs to overall protein function is context dependent.
机译:牛痘病毒NPH-II是必需的依赖核酸的三磷酸核苷,可催化含有3'尾巴的双链RNA的单向解链。 NPH-II是DExH盒蛋白家族的原型RNA解旋酶,由几种共有的序列基序定义。通过丙氨酸扫描诱变评估保守的QRKGRVGRVNPG区域对酶活性的贡献。 NPH-II的十个突变版本在牛痘病毒感染的BSC-40细胞中表达,并通过镍亲和色谱和甘油梯度沉降纯化。相对于RNA解旋酶,核酸依赖性ATP酶和RNA结合功能来表征突变的蛋白。在不变残基Q-491,G-494,R-495,G-497,R-498和G-502上进行单独的丙氨酸取代会导致RNA解链的严重缺陷,这与ATP水解速率降低相关。这些突变均不影响NPH-II与单链RNA或与用作解旋酶底物的尾部双链RNA的结合。严格保守的位置R-492的突变会抑制ATPase和解旋酶的活性,并且还会引起RNA结合的适度下降。非保守位点N-500和弱保守残基P-501的丙氨酸突变对与NPH-II相关的任何活性均无明显影响,而弱保守位点K-493的突变将解旋酶降低至三分之一,将ATPase降低至ATP水解和RNA解旋所需的野生型活性的三分之二,而不是RNA结合所需的活性。因为原型DEAD盒RNA解旋酶eIF-4A的HRxGRxxR基序中的突变消除或严重抑制了RNA结合,所以我们推测保守的解旋酶基序对总体蛋白质功能的贡献取决于上下文。

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