首页> 外文OA文献 >Shutoff of RNA Polymerase II Transcription by Poliovirus Involves 3C Protease-Mediated Cleavage of the TATA-Binding Protein at an Alternative Site: Incomplete Shutoff of Transcription Interferes with Efficient Viral Replication
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Shutoff of RNA Polymerase II Transcription by Poliovirus Involves 3C Protease-Mediated Cleavage of the TATA-Binding Protein at an Alternative Site: Incomplete Shutoff of Transcription Interferes with Efficient Viral Replication

机译:脊髓灰质炎病毒关闭RNA聚合酶II转录涉及在一个替代位点的3C蛋白酶介导的TATA结合蛋白的裂解:转录的不完全关闭会干扰有效的病毒复制。

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摘要

The TATA-binding protein (TBP) plays a crucial role in cellular transcription catalyzed by all three DNA-dependent RNA polymerases. Previous studies have shown that TBP is targeted by the poliovirus (PV)-encoded protease 3Cpro to bring about shutoff of cellular RNA polymerase II-mediated transcription in PV-infected cells. The processing of the majority of viral precursor proteins by 3Cpro involves cleavages at glutamine-glycine (Q-G) sites. We present evidence that suggests that the transcriptional inactivation of TBP by 3Cpro involves cleavage at the glutamine 104-serine 105 (Q104-S105) site of TBP and not at the Q18-G19 site as previously thought. The TBP Q104-S105 cleavage by 3Cpro is greatly influenced by the presence of an aliphatic amino acid at the P4 position, a hallmark of 3Cpro-mediated proteolysis. To examine the importance of host cell transcription shutoff in the PV life cycle, stable HeLa cell lines were created that express recombinant TBP resistant to cleavage by the viral proteases, called GG rTBP. Transcription shutoff was significantly impaired and delayed in GG rTBP cells upon infection with poliovirus compared with the cells that express wild-type recombinant TBP (wt rTBP). Infection of GG rTBP cells with poliovirus resulted in small plaques, significantly reduced viral RNA synthesis, and lower viral yields compared to the wt rTBP cell line. These results suggest that a defect in transcription shutoff can lead to inefficient replication of poliovirus in cultured cells.
机译:TATA结合蛋白(TBP)在所有三种依赖DNA的RNA聚合酶催化的细胞转录中起着至关重要的作用。先前的研究表明,脊髓灰质炎病毒(PV)编码的蛋白酶3Cpro靶向TBP,从而在PV感染的细胞中关闭了细胞RNA聚合酶II介导的转录。 3Cpro对大多数病毒前体蛋白的加工涉及在谷氨酰胺-甘氨酸(Q-G)位点的切割。我们提供的证据表明,3Cpro对TBP的转录失活涉及在TBP的谷氨酰胺104-丝氨酸105(Q104-S105)位点而不是先前认为的Q18-G19位点的切割。 3Cpro对TBP Q104-S105的切割受P4位(3Cpro介导的蛋白水解的标志)中脂肪族氨基酸的存在的影响很大。为了检查宿主细胞转录关闭在PV生命周期中的重要性,创建了稳定的HeLa细胞系,该细胞系表达对被称为GG rTBP的病毒蛋白酶切割的重组TBP具有抗性。与表达野生型重组TBP(wt rTBP)的细胞相比,脊髓灰质炎病毒感染后的GG rTBP细胞的转录阻断作用显着受损并延迟。与野生型rTBP细胞系相比,脊髓灰质炎病毒感染GG rTBP细胞导致斑块小,病毒RNA合成显着减少以及病毒产量降低。这些结果表明转录关闭中的缺陷可以导致脊髓灰质炎病毒在培养细胞中的复制效率低下。

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