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裂殖酵母中Vpr诱导的G2期阻滞、核定位及细胞死亡的突变分析

Mutational analysis of Vpr-induced G2 arrest, nuclear localization, and cell death in fission yeast.

作者信息

Chen M, Elder R T, Yu M, O'Gorman M G, Selig L, Benarous R, Yamamoto A, Zhao Y

机构信息

Children's Memorial Institute of Education and Research, Northwestern University Medical School, Chicago, Illinois 60614, USA.

出版信息

J Virol. 1999 Apr;73(4):3236-45. doi: 10.1128/JVI.73.4.3236-3245.1999.

Abstract

Cell cycle G2 arrest, nuclear localization, and cell death induced by human immunodeficiency virus type 1 Vpr were examined in fission yeast by using a panel of Vpr mutations that have been studied previously in human cells. The effects of the mutations on Vpr functions were highly similar between fission yeast and human cells. Consistent with mammalian cell studies, induction of cell cycle G2 arrest by Vpr was found to be independent of nuclear localization. In addition, G2 arrest was also shown to be independent of cell killing, which only occurred when the mutant Vpr localized to the nucleus. The C-terminal end of Vpr is crucial for G2 arrest, the N-terminal alpha-helix is important for nuclear localization, and a large part of the Vpr protein is responsible for cell killing. It is evident that the overall structure of Vpr is essential for these cellular effects, as N- and C-terminal deletions affected all three cellular functions. Furthermore, two single point mutations (H33R and H71R), both of which reside at the end of each alpha-helix, disrupted all three Vpr functions, indicating that these two mutations may have strong effects on the overall Vpr structure. The similarity of the mutant effects on Vpr function in fission yeast and human cells suggests that fission yeast can be used as a model system to evaluate these Vpr functions in naturally occurring viral isolates.

摘要

利用一组先前已在人类细胞中研究过的Vpr突变体,在裂殖酵母中检测了1型人类免疫缺陷病毒(HIV-1)Vpr诱导的细胞周期G2期阻滞、核定位及细胞死亡情况。这些突变对Vpr功能的影响在裂殖酵母和人类细胞中高度相似。与哺乳动物细胞研究结果一致,发现Vpr诱导的细胞周期G2期阻滞与核定位无关。此外,还表明G2期阻滞也与细胞杀伤无关,细胞杀伤仅在突变型Vpr定位于细胞核时发生。Vpr的C末端对于G2期阻滞至关重要,N末端α螺旋对于核定位很重要,并且Vpr蛋白的很大一部分负责细胞杀伤。显然,Vpr的整体结构对于这些细胞效应至关重要,因为N末端和C末端缺失影响了所有三种细胞功能。此外,两个单点突变(H33R和H71R)均位于每个α螺旋的末端,破坏了Vpr的所有三种功能,表明这两个突变可能对Vpr的整体结构有强烈影响。裂殖酵母和人类细胞中突变对Vpr功能影响的相似性表明,裂殖酵母可作为一个模型系统,用于评估天然病毒分离株中这些Vpr功能。

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