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外衣壳蛋白micro1的假定自切割,使得在病毒颗粒脱壳期间肉豆蔻酰化肽micro1N得以释放,这对于呼肠孤病毒进入细胞至关重要。

Putative autocleavage of outer capsid protein micro1, allowing release of myristoylated peptide micro1N during particle uncoating, is critical for cell entry by reovirus.

作者信息

Odegard Amy L, Chandran Kartik, Zhang Xing, Parker John S L, Baker Timothy S, Nibert Max L

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, 200 Longwood Ave., Boston, MA 02115, USA.

出版信息

J Virol. 2004 Aug;78(16):8732-45. doi: 10.1128/JVI.78.16.8732-8745.2004.

Abstract

Several nonenveloped animal viruses possess an autolytic capsid protein that is cleaved as a maturation step during assembly to yield infectious virions. The 76-kDa major outer capsid protein micro1 of mammalian orthoreoviruses (reoviruses) is also thought to be autocatalytically cleaved, yielding the virion-associated fragments micro1N (4 kDa; myristoylated) and micro1C (72 kDa). In this study, we found that micro1 cleavage to yield micro1N and micro1C was not required for outer capsid assembly but contributed greatly to the infectivity of the assembled particles. Recoated particles containing mutant, cleavage-defective micro1 (asparagine --> alanine substitution at amino acid 42) were competent for attachment; processing by exogenous proteases; structural changes in the outer capsid, including micro1 conformational change and sigma1 release; and transcriptase activation but failed to mediate membrane permeabilization either in vitro (no hemolysis) or in vivo (no coentry of the ribonucleotoxin alpha-sarcin). In addition, after these particles were allowed to enter cells, the delta region of micro1 continued to colocalize with viral core proteins in punctate structures, indicating that both elements remained bound together in particles and/or trapped within the same subcellular compartments, consistent with a defect in membrane penetration. If membrane penetration activity was supplied in trans by a coinfecting genome-deficient particle, the recoated particles with cleavage-defective micro1 displayed much higher levels of infectivity. These findings led us to propose a new uncoating intermediate, at which particles are trapped in the absence of micro1N/micro1C cleavage. We additionally showed that this cleavage allowed the myristoylated, N-terminal micro1N fragment to be released from reovirus particles during entry-related uncoating, analogous to the myristoylated, N-terminal VP4 fragment of picornavirus capsid proteins. The results thus suggest that hydrophobic peptide release following capsid protein autocleavage is part of a general mechanism of membrane penetration shared by several diverse nonenveloped animal viruses.

摘要

几种无包膜动物病毒拥有一种自溶衣壳蛋白,该蛋白在装配过程中作为成熟步骤被切割,以产生有感染性的病毒粒子。哺乳动物正呼肠孤病毒(呼肠孤病毒)的76 kDa主要外衣壳蛋白μ1也被认为是自催化切割的,产生与病毒粒子相关的片段μ1N(4 kDa;肉豆蔻酰化)和μ1C(72 kDa)。在本研究中,我们发现产生μ1N和μ1C的μ1切割对于外衣壳装配不是必需的,但对装配颗粒的感染性有很大贡献。含有突变的、切割缺陷的μ1(氨基酸42处天冬酰胺→丙氨酸取代)的重新包被颗粒能够附着;能被外源蛋白酶加工;外衣壳有结构变化,包括μ1构象变化和σ1释放;能激活转录酶,但无论是在体外(无溶血)还是在体内(核糖核酸毒素α-肌动蛋白无共进入)都不能介导膜通透化。此外,在这些颗粒进入细胞后,μ1的δ区域继续与病毒核心蛋白在点状结构中共定位,表明这两个元件在颗粒中仍结合在一起和/或被困在同一亚细胞区室中,这与膜穿透缺陷一致。如果膜穿透活性由共感染的基因组缺陷颗粒反式提供,具有切割缺陷的μ1的重新包被颗粒显示出更高水平的感染性。这些发现使我们提出一种新的脱壳中间体,在该中间体处颗粒在没有μ1N/μ1C切割的情况下被困住。我们还表明,这种切割使得肉豆蔻酰化的N端μ1N片段在与进入相关的脱壳过程中从呼肠孤病毒颗粒中释放出来,类似于微小核糖核酸病毒衣壳蛋白的肉豆蔻酰化N端VP4片段。因此,结果表明衣壳蛋白自切割后疏水肽的释放是几种不同的无包膜动物病毒共有的膜穿透一般机制的一部分。

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