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哺乳动物呼肠孤病毒外衣壳中微小1三聚体之间的二硫键结合:病毒粒子形态发生中的一个晚期且可逆步骤。

Disulfide bonding among micro 1 trimers in mammalian reovirus outer capsid: a late and reversible step in virion morphogenesis.

作者信息

Odegard Amy L, Chandran Kartik, Liemann Susanne, Harrison Stephen C, Nibert Max L

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Virol. 2003 May;77(9):5389-400. doi: 10.1128/jvi.77.9.5389-5400.2003.

Abstract

We examined how a particular type of intermolecular disulfide (ds) bond is formed in the capsid of a cytoplasmically replicating nonenveloped animal virus despite the normally reducing environment inside cells. The micro 1 protein, a major component of the mammalian reovirus outer capsid, has been implicated in penetration of the cellular membrane barrier during cell entry. A recent crystal structure determination supports past evidence that the basal oligomer of micro 1 is a trimer and that 200 of these trimers surround the core in the fenestrated T=13 outer capsid of virions. We found in this study that the predominant forms of micro 1 seen in gels after the nonreducing disruption of virions are ds-linked dimers. Cys679, near the carboxyl terminus of micro 1, was shown to form this ds bond with the Cys679 residue from another micro 1 subunit. The crystal structure in combination with a cryomicroscopy-derived electron density map of virions indicates that the two subunits that contribute a Cys679 residue to each ds bond must be from adjacent micro 1 trimers in the outer capsid, explaining the trimer-dimer paradox. Successful in vitro assembly of the outer capsid by a nonbonding mutant of micro 1 (Cys679 substituted by serine) confirmed the role of Cys679 and suggested that the ds bonds are not required for assembly. A correlation between micro 1-associated ds bond formation and cell death in experiments in which virions were purified from cells at different times postinfection indicated that the ds bonds form late in infection, after virions are exposed to more oxidizing conditions than those in healthy cells. The infectivity measurements of the virions with differing levels of ds-bonded micro 1 showed that these bonds are not required for infection in culture. The ds bonds in purified virions were susceptible to reduction and reformation in situ, consistent with their initial formation late in morphogenesis and suggesting that they may undergo reduction during the entry of reovirus particles into new cells.

摘要

我们研究了一种特定类型的分子间二硫键(ds)是如何在一种在细胞质中复制的无包膜动物病毒的衣壳中形成的,尽管细胞内环境通常呈还原性。微小1蛋白是哺乳动物呼肠孤病毒外衣壳的主要成分,与病毒进入细胞过程中穿透细胞膜屏障有关。最近的晶体结构测定支持了过去的证据,即微小1的基础寡聚体是三聚体,并且这些三聚体中的200个在病毒粒子有孔的T = 13外衣壳中围绕核心。我们在这项研究中发现,在病毒粒子非还原裂解后在凝胶中看到的微小1的主要形式是ds连接的二聚体。微小1羧基末端附近的Cys679被证明与另一个微小1亚基的Cys679残基形成这种ds键。晶体结构与病毒粒子的冷冻显微镜衍生电子密度图相结合表明,为每个ds键贡献一个Cys679残基的两个亚基必须来自外衣壳中相邻的微小1三聚体,这解释了三聚体 - 二聚体悖论。微小1的非键合突变体(Cys679被丝氨酸取代)成功地在体外组装了外衣壳,证实了Cys679的作用,并表明ds键对于组装不是必需的。在感染后不同时间从细胞中纯化病毒粒子的实验中,微小1相关ds键形成与细胞死亡之间的相关性表明,ds键在感染后期形成,此时病毒粒子比健康细胞暴露于更多的氧化条件下。对具有不同水平ds键合微小1的病毒粒子的感染性测量表明,这些键对于培养中的感染不是必需的。纯化病毒粒子中的ds键易于原位还原和重新形成,这与它们在形态发生后期的初始形成一致,并表明它们可能在呼肠孤病毒颗粒进入新细胞的过程中经历还原。

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