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Capped RNA primer binding to influenza polymerase and implications for the mechanism of cap-binding inhibitors

机译:带帽的RNA引物与流感聚合酶的结合及其对帽结合抑制剂机制的影响

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摘要

Influenza polymerase uses short capped primers snatched from nascent Pol II transcripts to initiate transcription of viral mRNAs. Here we describe crystal structures of influenza A and B polymerase bound to a capped primer in a configuration consistent with transcription initiation (’priming state’) and show by functional assays that conserved residues from both the PB2 midlink and cap-binding domains are important for positioning the capped RNA. In particular, mutation of PB2 Arg264, which interacts with the triphosphate linkage in the cap, significantly and specifically decreases cap-dependent transcription. We also compare the configuration of the midlink and cap-binding domains in the priming state with their very different relative arrangement (called the ‘apo’ state) in structures where the potent cap-binding inhibitor VX-787, or a close analogue, is bound. In the ‘apo’ state the inhibitor makes additional interactions to the midlink domain that increases its affinity beyond that to the cap-binding domain alone. The comparison suggests that the mechanism of resistance of certain mutations that allow virus to escape from VX-787, notably PB2 N510T, can only be rationalized if VX-787 has a dual mode of action, direct inhibition of capped RNA binding as well as stabilization of the transcriptionally inactive ‘apo’ state.
机译:流感聚合酶使用从新生的Pol II转录物中夺取的短帽引物来启动病毒mRNA的转录。在这里,我们描述了以与转录起始(“启动状态”)一致的构型与封端引物结合的甲型和乙型流感聚合酶的晶体结构,并通过功能分析表明,PB2中链和帽结合域的保守残基对于定位加盖的RNA。特别地,与帽中的三磷酸键相互作用的PB2 Arg264的突变显着且特异性地降低了帽依赖性转录。我们还比较了在强力帽结合抑制剂VX-787或紧密类似物为结构的结构中,中链和帽结合域在启动状态下的构型与它们的相对排列(称为“ apo”状态)非常不同。界。在“载脂蛋白”状态下,抑制剂与中链结构域进行其他相互作用,从而增加了其亲和力,而不仅仅是对帽结合域的亲和力。比较结果表明,只有当VX-787具有双重作用模式,直接抑制带帽RNA结合以及稳定时,才能使某些允许病毒从VX-787逃脱的突变(尤其是PB2 N510T)的抗性机制合理化。转录不活跃的“ apo”状态。

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