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HIV-1病毒蛋白R(Vpr)在裂殖酵母中诱导G2期细胞周期停滞,这与Rad24/14-3-3依赖性、Chk1/Cds1非依赖性的Wee1上调有关。

HIV-1 Vpr induces G2 cell cycle arrest in fission yeast associated with Rad24/14-3-3-dependent, Chk1/Cds1-independent Wee1 upregulation.

作者信息

Matsuda Naoto, Tanaka Hiroko, Yamazaki Sanae, Suzuki Jun-Ichiro, Tanaka Koichi, Yamada Takeshi, Masuda Michiaki

机构信息

Department of Microbiology, Dokkyo Medical University School of Medicine, Kita-kobayashi 880, Mibu, Tochigi 321-0293, Japan.

出版信息

Microbes Infect. 2006 Oct;8(12-13):2736-44. doi: 10.1016/j.micinf.2006.08.003. Epub 2006 Aug 30.

Abstract

Viral protein R (Vpr), an accessory protein of human immunodeficiency virus type 1 (HIV-1), induces the G2 cell cycle arrest in fission yeast for which host factors, such as Wee1 and Rad24, are required. Catalyzing the inhibitory phosphorylation of Cdc2, Wee1 is known to serve as a major regulator of G2/M transition in the eukaryotic cell cycle. It has been reported that the G2 checkpoint induced by DNA damage or incomplete DNA replication is associated with phosphorylation and upregulation of Wee1 for which Chk1 and Cds1 kinase is required. In this study, we demonstrate that the G2 arrest induced by HIV-1 Vpr in fission yeast is also associated with increase in the phosphorylation and amount of Wee1, but in a Chk1/Cds1-independent manner. Rad24 and human 14-3-3 appear to contribute to Vpr-induced G2 arrest by elevating the level of Wee1 expression. It appears that Vpr could cause the G2 arrest through a mechanism similar to, but distinct from, the physiological G2 checkpoint controls. The results may provide useful insights into the mechanism by which HIV-1 Vpr causes the G2 arrest in eukaryotic cells. Vpr may also serve as a useful molecular tool for exploring novel cell cycle control mechanisms.

摘要

病毒蛋白R(Vpr)是1型人类免疫缺陷病毒(HIV-1)的一种辅助蛋白,可在裂殖酵母中诱导G2期细胞周期停滞,这一过程需要诸如Wee1和Rad24等宿主因子。已知Wee1通过催化Cdc2的抑制性磷酸化,作为真核细胞周期中G2/M转换的主要调节因子。据报道,由DNA损伤或不完全DNA复制诱导的G2检查点与Wee1的磷酸化和上调有关,这一过程需要Chk1和Cds1激酶。在本研究中,我们证明HIV-1 Vpr在裂殖酵母中诱导的G2期停滞也与Wee1的磷酸化增加和含量增加有关,但与Chk1/Cds1无关。Rad24和人14-3-3似乎通过提高Wee1的表达水平,促进Vpr诱导的G2期停滞。看来Vpr可能通过一种类似于但又不同于生理性G2检查点控制的机制导致G2期停滞。这些结果可能为HIV-1 Vpr在真核细胞中导致G2期停滞的机制提供有用的见解。Vpr也可能作为一种有用的分子工具,用于探索新的细胞周期控制机制。

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