Human immunodeficiency virus type 1 (HIV-1) viral protein R (Vpr) has been shown to cause G2 cell cycle arrest in human cells by inducing ATR-mediated inactivation of p34cdc2, but factors directly engaged in this process remain unknown. We used tandem affinity purification to isolate native Vpr complexes. We found that damaged DNA binding protein 1 (DDB1), viral protein R binding protein (VPRBP), and cullin 4A (CUL4A)--components of a CUL4A E3 ubiquitin ligase complex, DDB1-CUL4A(VPRBP)--were able to associate with Vpr. Depletion of VPRBP by small interfering RNA impaired Vpr-mediated induction of G2 arrest. Importantly, VPRBP knockdown alone did not affect normal cell cycle progression or activation of ATR checkpoints, suggesting that the involvement of VPRBP in G2 arrest was specific to Vpr. Moreover, leucine/isoleucine-rich domain Vpr mutants impaired in their ability to interact with VPRBP and DDB1 also produced strongly attenuated G2 arrest. In contrast, G2 arrest-defective C-terminal Vpr mutants were found to maintain their ability to associate with these proteins, suggesting that the interaction of Vpr with the DDB1-VPRBP complex is necessary but not sufficient to block cell cycle progression. Overall, these results point toward a model in which Vpr could act as a connector between the DDB1-CUL4A(VPRBP) E3 ubiquitin ligase complex and an unknown cellular factor whose proteolysis or modulation of activity through ubiquitination would activate ATR-mediated checkpoint signaling and induce G2 arrest.

译文

:已显示人类免疫缺陷病毒1型(HIV-1)病毒蛋白R(Vpr)通过诱导ATR介导的p34cdc2失活而导致人细胞中的G2细胞周期停滞,但直接参与这一过程的因素仍然未知。我们使用串联亲和纯化分离天然Vpr复合物。我们发现受损的DNA结合蛋白1(DDB1),病毒蛋白R结合蛋白(VPRBP)和cullin 4A(CUL4A)是CUL4A E3泛素连接酶复合物DDB1-CUL4A(VPRBP)的组成部分与Vpr。小干扰RNA消耗VPRBP会损害Vpr介导的G2阻滞诱导。重要的是,仅VPRBP敲低并不会影响正常的细胞周期进程或ATR检查点的激活,这表明VPRBP参与G2阻滞是Vpr特有的。此外,亮氨酸/富含异亮氨酸的域Vpr突变体与VPRBP和DDB1相互作用的能力受损,也导致G2阻滞作用大大减弱。相比之下,发现G2逮捕缺陷的C末端Vpr突变体保持它们与这些蛋白质缔合的能力,这表明Vpr与DDB1-VPRBP复合物的相互作用是必要的,但不足以阻止细胞周期进程。总体而言,这些结果指向一个模型,其中Vpr可以充当DDB1-CUL4A(VPRBP)E3泛素连接酶复合物与未知细胞因子之间的连接子,该细胞因子通过泛素化进行蛋白水解或活性调节将激活ATR介导的检查点信号并诱导G2逮捕。

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