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SARS-CoV-2 核衣壳蛋白中特定的磷酸化依赖构象转换抑制 RNA 结合。

A specific phosphorylation-dependent conformational switch in SARS-CoV-2 nucleocapsid protein inhibits RNA binding.

机构信息

Université Grenoble Alpes, CNRS, CEA, IBS, F-38000 Grenoble, France.

出版信息

Sci Adv. 2024 Aug 2;10(31):eaax2323. doi: 10.1126/sciadv.aax2323.

Abstract

The nucleocapsid protein of severe acute respiratory syndrome coronavirus 2 encapsidates the viral genome and is essential for viral function. The central disordered domain comprises a serine-arginine-rich (SR) region that is hyperphosphorylated in infected cells. This modification regulates function, although mechanistic details remain unknown. We use nuclear magnetic resonance to follow structural changes occurring during hyperphosphorylation by serine arginine protein kinase 1, glycogen synthase kinase 3, and casein kinase 1, that abolishes interaction with RNA. When eight approximately uniformly distributed sites have been phosphorylated, the SR domain binds the same interface as single-stranded RNA, resulting in complete inhibition of RNA binding. Phosphorylation by protein kinase A does not prevent RNA binding, indicating that the pattern resulting from physiologically relevant kinases is specific for inhibition. Long-range contacts between the RNA binding, linker, and dimerization domains are abrogated, phenomena possibly related to genome packaging and unpackaging. This study provides insight into the recruitment of specific host kinases to regulate viral function.

摘要

严重急性呼吸综合征冠状病毒 2 的核衣壳蛋白包裹着病毒基因组,对病毒功能至关重要。中央无序结构域包含一个富含丝氨酸-精氨酸的(SR)区域,该区域在感染细胞中被高度磷酸化。这种修饰调节功能,尽管其机制细节尚不清楚。我们使用核磁共振来跟踪丝氨酸精氨酸蛋白激酶 1、糖原合酶激酶 3 和酪蛋白激酶 1 磷酸化过程中发生的结构变化,这会导致与 RNA 的相互作用被破坏。当 8 个大约均匀分布的位点被磷酸化时,SR 结构域与单链 RNA 结合相同的界面,导致 RNA 结合完全被抑制。蛋白激酶 A 的磷酸化不会阻止 RNA 结合,表明生理相关激酶产生的模式是专门用于抑制的。RNA 结合、连接和二聚化结构域之间的长程接触被破坏,这些现象可能与基因组包装和解包装有关。这项研究提供了对特定宿主激酶募集以调节病毒功能的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f8a/11296341/18f8bfbdf4dc/sciadv.aax2323-f1.jpg

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