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A Conserved Domain in the Coronavirus Membrane Protein Tail Is Important for Virus Assembly

机译:冠状病毒膜蛋白尾巴中的保守域对于病毒组装很重要

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摘要

Coronavirus membrane (M) proteins play key roles in virus assembly, through M-M, M-spike (S), and M-nucleocapsid (N) protein interactions. The M carboxy-terminal endodomain contains a conserved domain (CD) following the third transmembrane (TM) domain. The importance of the CD (SWWSFNPETNNL) in mouse hepatitis virus was investigated with a panel of mutant proteins, using genetic analysis and transient-expression assays. A charge reversal for negatively charged E121 was not tolerated. Lysine (K) and arginine (R) substitutions were replaced in recovered viruses by neutrally charged glutamine (Q) and leucine (L), respectively, after only one passage. E121Q and E121L M proteins were capable of forming virus-like particles (VLPs) when coexpressed with E, whereas E121R and E121K proteins were not. Alanine substitutions for the first four or the last four residues resulted in viruses with significantly crippled phenotypes and proteins that failed to assemble VLPs or to be rescued into the envelope. All recovered viruses with alanine substitutions in place of SWWS residues had second-site, partially compensating, changes in the first TM of M. Alanine substitution for proline had little impact on the virus. N protein coexpression with some M mutants increased VLP production. The results overall suggest that the CD is important for formation of the viral envelope by helping mediate fundamental M-M interactions and that the presence of the N protein may help stabilize M complexes during virus assembly.
机译:冠状病毒膜(M)蛋白通过M-M,M-spike(S)和M-核衣壳(N)蛋白相互作用在病毒装配中起关键作用。 M个羧基末端的内结构域在第三个跨膜(TM)结构域之后包含一个保守结构域(CD)。 CD(SWWSFNPETNNL)在小鼠肝炎病毒中的重要性已通过一组突变蛋白进行了遗传分析和瞬时表达分析。不允许带负电的E121进行电荷反转。仅在一次传代后,在回收的病毒中,分别用中性电荷的谷氨酰胺(Q)和亮氨酸(L)替代赖氨酸(K)和精氨酸(R)替代。当与E共表达时,E121Q和E121L M蛋白能够形成病毒样颗粒(VLP),而E121R和E121K蛋白则不能。前四个或最后四个残基的丙氨酸替代导致病毒的表型和蛋白质严重残缺,无法装配VLP或无法挽救进入包膜。所有用丙氨酸替代SWWS残基的回收病毒在M的第一个TM中都有第二位的,部分补偿的变化。丙氨酸替代脯氨酸对病毒几乎没有影响。 N蛋白与某些M突变体的共表达增加了VLP的产生。总体结果表明,CD通过帮助介导基本的M-M相互作用,对于病毒包膜的形成非常重要,并且N蛋白的存在可能有助于稳定病毒装配过程中的M复合物。

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