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人副流感病毒 3 磷蛋白是一个四聚体,与埃博拉病毒磷蛋白 VP35 具有结构和相互作用特征。

Human Parainfluenza Virus 3 Phosphoprotein Is a Tetramer and Shares Structural and Interaction Features with Ebola Phosphoprotein VP35.

机构信息

Department of Biochemistry & Biophysics, College of Science, Corvallis, OR 97331, USA.

NMR Facility, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Biomolecules. 2021 Oct 29;11(11):1603. doi: 10.3390/biom11111603.

Abstract

The human parainfluenza virus 3 (HPIV3) poses a risk for pneumonia development in young children and immunocompromised patients. To investigate mechanisms of HPIV3 pathogenesis, we characterized the association state and host protein interactions of HPIV3 phosphoprotein (HPIV3 P), an indispensable viral polymerase cofactor. Sequence analysis and homology modeling predict that HPIV3 P possesses a long, disordered N-terminal tail (P) a coiled-coil multimerization domain (P), similar to the well-characterized paramyxovirus phosphoproteins from measles and Sendai viruses. Using a recombinantly expressed and purified construct of P and P, we show that HPIV3 P in solution is primarily an alpha-helical tetramer that is stable up to 60 °C. Pulldown and isothermal titration calorimetry experiments revealed that HPIV3 P binds the host hub protein LC8, and turbidity experiments demonstrated a new role for LC8 in increasing the solubility of HPIV3 P in the presence of crowding agents such as RNA. For comparison, we show that the multimerization domain of the Zaire Ebola virus phosphoprotein VP35 is also a tetramer and binds LC8 but with significantly higher affinity. Comparative analysis of the domain architecture of various virus phosphoproteins in the order Mononegavirales show multiple predicted and verified LC8 binding motifs, suggesting its prevalence and importance in regulating viral phosphoprotein structures. Our work provides evidence for LC8 binding to phosphoproteins with multiple association states, either tetrameric, as in the HPIV3 and Ebola phosphoproteins shown here, or dimeric as in rabies virus phosphoprotein. Taken together the data suggest that the association states of a virus-specific phosphoprotein and the complex formed by binding of the phosphoprotein to host LC8 are important regulators of viral function.

摘要

人副流感病毒 3(HPIV3)可导致幼儿和免疫功能低下患者发生肺炎。为了研究 HPIV3 的发病机制,我们对其磷蛋白(HPIV3 P)的结合状态和宿主蛋白相互作用进行了鉴定,HPIV3 P 是一种不可或缺的病毒聚合酶辅助因子。序列分析和同源建模预测,HPIV3 P 具有长的、无序的 N 端尾部(P)和卷曲螺旋多聚化结构域(P),类似于麻疹病毒和仙台病毒的已充分研究的副粘病毒磷蛋白。我们利用重组表达和纯化的 P 和 P 构建体,证明 P 在溶液中主要为α-螺旋四聚体,在 60°C 下稳定。下拉和等温滴定量热法实验显示,HPIV3 P 与宿主枢纽蛋白 LC8 结合,浊度实验表明 LC8 在存在拥挤剂(如 RNA)的情况下增加 HPIV3 P 的溶解度方面发挥了新作用。作为比较,我们证明扎伊尔埃博拉病毒磷蛋白 VP35 的多聚化结构域也是四聚体,并且与 LC8 结合,但亲和力显著更高。对单负链病毒属中各种病毒磷蛋白的结构域架构的比较分析表明,存在多个预测和验证的 LC8 结合基序,表明其在调节病毒磷蛋白结构方面的普遍性和重要性。我们的工作为 LC8 与具有多种结合状态的磷蛋白(如本文所示的 HPIV3 和埃博拉病毒磷蛋白为四聚体,而狂犬病病毒磷蛋白为二聚体)结合提供了证据。综合数据表明,病毒特异性磷蛋白的结合状态以及磷蛋白与宿主 LC8 结合形成的复合物是病毒功能的重要调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6900/8615749/b1afd975b0ae/biomolecules-11-01603-g001.jpg

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