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Human Immunodeficiency Virus Type 1 Vif Induces Cell Cycle Delay via Recruitment of the Same E3 Ubiquitin Ligase Complex That Targets APOBEC3 Proteins for Degradation▿ ‡

机译:人类免疫缺陷病毒1型Vif通过招募相同的E3泛素连接酶复合物(针对APOBEC3蛋白质降解)招募细胞周期延迟。

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摘要

Human immunodeficiency virus type 1 (HIV-1) Vif recruits a Cullin 5 ubiquitin ligase that targets APOBEC3 proteins for degradation. Recently, Vif has also been shown to induce cell cycle disturbance in G2. We show that in contrast to the expression of Vpr, the expression of Vif does not preclude cell division, and therefore, Vif causes delay and not arrest in G2. We also demonstrate that the interaction of Vif with the ubiquitin ligase is required for cell cycle disruption, as was previously shown for HIV-1 Vpr. The presence of APOBEC3 D/E, F, and G had no influence on Vif-induced alteration of the cell cycle. We conclude that cell cycle delay by Vif is a result of ubiquitination and degradation of a cellular protein that is different from the known APOBEC3 family members.
机译:1型人类免疫缺陷病毒(HIV-1)Vif募集了针对APOBEC3蛋白降解的Cullin 5泛素连接酶。最近,Vif也已显示出可诱导G2细胞周期紊乱。我们表明,与Vpr的表达相反,Vif的表达不排除细胞分裂,因此Vif会引起延迟,并且不会在G2中停滞。我们还证明了Vif与泛素连接酶的相互作用是细胞周期破坏所必需的,正如先前针对HIV-1 Vpr所显示的。 APOBEC3 D / E,F和G的存在对Vif诱导的细胞周期改变没有影响。我们得出的结论是,Vif引起的细胞周期延迟是不同于已知APOBEC3家族成员的细胞蛋白泛素化和降解的结果。

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