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一个通过衣壳五重圆柱体收缩孔隙的保守亮氨酸在细小病毒感染中起核心作用。

A conserved leucine that constricts the pore through the capsid fivefold cylinder plays a central role in parvoviral infection.

作者信息

Farr Glen A, Tattersall Peter

机构信息

Department of Laboratory Medicine, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Virology. 2004 Jun 1;323(2):243-56. doi: 10.1016/j.virol.2004.03.006.

Abstract

The atomic structure of the DNA-containing T = 1 particle of the parvovirus minute virus of mice (MVM) reveals cylindrical projections at each fivefold symmetry axis, each containing an 8 Angstrom pore through which runs 10 amino acids of a single VP2 N-terminus. The tightest constriction of this pore is formed at its inner end by the juxtaposition of leucine side chains from position 172 of five independent VP2 molecules. To test whether L172 modulates the extrusion of VP N-termini, we constructed and analyzed a complete set of amino acid substitution mutants at this highly conserved residue. All but one mutant produced DNA-containing virions, but only two, L172V and L172I, were infectious, the others being blocked for viral entry. Several mutants were significantly defective for assembly at 39 degrees C, but not at 32 degrees C. L172W significantly impaired genome encapsidation, indicating that the fivefold cylinder may also be the DNA packaging portal. Although tryptic cleavage of the VP2 N-terminus was not affected for the mutants, VP1 was degraded during proteolysis of mutant, but not wild-type, virions.

摘要

小鼠细小病毒(MVM)含DNA的T = 1颗粒的原子结构显示,在每个五重对称轴处都有圆柱形突起,每个突起都有一个8埃的孔,单个VP2 N端的10个氨基酸通过该孔穿过。该孔最窄的收缩部分在其内侧由五个独立VP2分子第172位的亮氨酸侧链并列形成。为了测试L172是否调节VP N端的挤出,我们构建并分析了这个高度保守残基处的一整套氨基酸替代突变体。除了一个突变体外,所有突变体都产生了含DNA的病毒粒子,但只有两个突变体L172V和L172I具有感染性,其他突变体在病毒进入阶段受阻。几个突变体在39℃时组装明显有缺陷,但在32℃时没有。L172W显著损害基因组包装,表明五重圆柱体可能也是DNA包装通道。虽然突变体的VP2 N端的胰蛋白酶切割不受影响,但在突变体病毒粒子而非野生型病毒粒子的蛋白水解过程中,VP1被降解。

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