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一种新型 DCAF1 结合基序,对于 Vpx 介导的核 SAMHD1 降解和 Vpr 诱导的 G2 期阻滞是必需的。

A novel DCAF1-binding motif required for Vpx-mediated degradation of nuclear SAMHD1 and Vpr-induced G2 arrest.

机构信息

First Hospital of Jilin University, Institute of Virology and AIDS Research, Changchun, Jilin Province, China.

出版信息

Cell Microbiol. 2012 Nov;14(11):1745-56. doi: 10.1111/j.1462-5822.2012.01835.x. Epub 2012 Aug 9.

Abstract

HIV-2 and closely related SIV Vpx proteins are essential for viral replication in macrophages and dendritic cells. Vpx hijacks DCAF1-DDB1-Cul4 E3 ubiquitin ligase to promote viral replication. DCAF1 is essential for cell proliferation and embryonic development and is responsible for the polyubiquitination of poorly defined cellular proteins. How substrate receptors recruit the DCAF1-containing E3 ubiquitin ligase to induce protein degradation is still poorly understood. Here we identify a highly conserved motif (Wx4Φx2Φx3AΦxH) that is present in diverse Vpx and Vpr proteins of primate lentiviruses. We demonstrate that the Wx4Φx2Φx3AΦxH motif in SIVmac Vpx is required for both the Vpx-DCAF1 interaction and/or Vpx-mediated degradation of SAMHD1. DCAF1-binding defective Vpx mutants also have impaired ability to promote SIVΔVpx virus infection of myeloid cells. Critical amino acids in the Wx4Φx2Φx3AΦxH motif of SIV Vpx that are important for DCAF1 interaction maintained the ability to bind SAMHD1, indicating that the DCAF1 and SAMHD1 interactions involve distinctive interfaces in Vpx. Surprisingly, VpxW24A mutant proteins that were still capable of binding DCAF1 and SAMHD1 lost the ability to induce SAMHD1 degradation, suggesting that Vpx is not a simple linker between the DCAF1-DDB1-Cul4 E3 ubiquitin ligase and its substrate, SAMHD1.VpxW24A maintained the ability to accumulate in the nucleus despite the fact that nuclear, but not cytoplasmic, mutant forms of SAMHD1 were more sensitive to Vpx-mediated degradation. The Wx4Φx2Φx3AΦxH motif in HIV-1 Vpr is also required for the Vpr-DCAF1 interaction and Vpr-induced G2 cell cycle arrest. Thus, our data reveal previously unrecognized functional interactions involved in the assembly of virally hijacked DCAF1-DDB1-based E3 ubiquitin ligase complex.

摘要

HIV-2 和密切相关的 SIV Vpx 蛋白对于巨噬细胞和树突状细胞中的病毒复制是必不可少的。Vpx 劫持 DCAF1-DDB1-Cul4 E3 泛素连接酶以促进病毒复制。DCAF1 对于细胞增殖和胚胎发育是必不可少的,负责对定义不明确的细胞蛋白进行多泛素化。目前尚不清楚底物受体如何招募包含 DCAF1 的 E3 泛素连接酶以诱导蛋白质降解。在这里,我们鉴定出一种高度保守的基序(Wx4Φx2Φx3AΦxH),存在于灵长类慢病毒的各种 Vpx 和 Vpr 蛋白中。我们证明,SIVmac Vpx 中的 Wx4Φx2Φx3AΦxH 基序对于 Vpx-DCAF1 相互作用和/或 Vpx 介导的 SAMHD1 降解都是必需的。DCAF1 结合缺陷的 Vpx 突变体也具有降低的促进 SIVΔVpx 病毒感染髓样细胞的能力。SIV Vpx 中的 Wx4Φx2Φx3AΦxH 基序中的关键氨基酸对于 DCAF1 相互作用很重要,同时保持与 SAMHD1 结合的能力,表明 DCAF1 和 SAMHD1 相互作用涉及 Vpx 中的独特界面。令人惊讶的是,尽管仍然能够结合 DCAF1 和 SAMHD1 的 VpxW24A 突变蛋白丧失了诱导 SAMHD1 降解的能力,但 Vpx 并不是 DCAF1-DDB1-Cul4 E3 泛素连接酶与其底物 SAMHD1 之间的简单连接物。VpxW24A 尽管核内但不是细胞质突变形式的 SAMHD1 对 Vpx 介导的降解更敏感,但仍保留在核内积累的能力。HIV-1 Vpr 中的 Wx4Φx2Φx3AΦxH 基序也需要 Vpr-DCAF1 相互作用和 Vpr 诱导的 G2 细胞周期阻滞。因此,我们的数据揭示了以前未被识别的与组装病毒劫持的 DCAF1-DDB1 为基础的 E3 泛素连接酶复合物相关的功能相互作用。

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