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小鼠细小病毒的NS2蛋白是小鼠细胞中后代病毒粒子有效核输出所必需的。

The NS2 proteins of parvovirus minute virus of mice are required for efficient nuclear egress of progeny virions in mouse cells.

作者信息

Eichwald Virginie, Daeffler Laurent, Klein Michèle, Rommelaere Jean, Salomé Nathalie

机构信息

Department of Applied Tumor Virology, INSERM U375-Abteilung F0100, Deutsches Krebsforschungszentrum, Im Neuenheimer Feld 242, D-69120 Heidelberg, Germany.

出版信息

J Virol. 2002 Oct;76(20):10307-19. doi: 10.1128/jvi.76.20.10307-10319.2002.

Abstract

The small nonstructural NS2 proteins of parvovirus minute virus of mice (MVMp) were previously shown to interact with the nuclear export receptor Crm1. We report here the analysis of two MVM mutant genomic clones generating NS2 proteins that are unable to interact with Crm1 as a result of amino acid substitutions within their nuclear export signal (NES) sequences. Upon transfection of human and mouse cells, the MVM-NES21 and MVM-NES22 mutant genomic clones were proficient in synthesis of the four virus-encoded proteins. While the MVM-NES22 clone was further able to produce infectious mutant virions, no virus could be recovered from cells transfected with the MVM-NES21 clone. Whereas the defect of MVM-NES21 appeared to be complex, the phenotype of MVM-NES22 could be traced back to a novel distinct NS2 function. Infection of mouse cells with the MVM-NES22 mutant led to stronger nuclear retention not only of the NS2 proteins but also of infectious progeny MVM particles. This nuclear sequestration correlated with a severe delay in the release of mutant virions in the medium and with prolonged survival of the infected cell populations compared with wild-type virus-treated cultures. This defect could explain, at least in part, the small size of the plaques generated by the MVM-NES22 mutant when assayed on mouse indicator cells. Altogether, our data indicate that the interaction of MVMp NS2 proteins with the nuclear export receptor Crm1 plays a critical role at a late stage of the parvovirus life cycle involved in release of progeny viruses.

摘要

小鼠微小病毒(MVMp)的小非结构NS2蛋白先前已被证明与核输出受体Crm1相互作用。我们在此报告对两个MVM突变基因组克隆的分析,这些克隆产生的NS2蛋白由于其核输出信号(NES)序列中的氨基酸替换而无法与Crm1相互作用。在转染人和小鼠细胞后,MVM-NES21和MVM-NES22突变基因组克隆能够熟练合成四种病毒编码蛋白。虽然MVM-NES22克隆进一步能够产生有感染性的突变病毒粒子,但从用MVM-NES21克隆转染的细胞中无法回收病毒。虽然MVM-NES21的缺陷似乎很复杂,但MVM-NES22的表型可追溯到一种新的独特NS2功能。用MVM-NES22突变体感染小鼠细胞不仅导致NS2蛋白更强的核滞留,还导致有感染性的子代MVM颗粒的核滞留。这种核隔离与突变病毒粒子在培养基中的释放严重延迟以及与野生型病毒处理的培养物相比感染细胞群体的存活时间延长相关。这种缺陷至少可以部分解释在小鼠指示细胞上测定时MVM-NES22突变体产生的噬斑尺寸较小的原因。总之,我们的数据表明MVMp NS2蛋白与核输出受体Crm1的相互作用在细小病毒生命周期中涉及子代病毒释放的后期阶段起着关键作用。

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