首页> 外文OA文献 >Human Immunodeficiency Virus Type 1 Vif Functionally Interacts with Diverse APOBEC3 Cytidine Deaminases and Moves with Them between Cytoplasmic Sites of mRNA Metabolism▿
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Human Immunodeficiency Virus Type 1 Vif Functionally Interacts with Diverse APOBEC3 Cytidine Deaminases and Moves with Them between Cytoplasmic Sites of mRNA Metabolism▿

机译:1型人类免疫缺陷病毒Vif在功能上与各种APOBEC3胞嘧啶脱氨酶相互作用,并在mRNA代谢的细胞质位点之间移动。

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摘要

VifIIIB, which has been a standard model for the viral infectivity factor of human immunodeficiency virus type 1 (HIV-1), binds the cytidine deaminase APOBEC3G (A3G) and induces its degradation, thereby precluding its lethal incorporation into assembling virions. Additionally, VifIIIB less efficiently degrades A3F, another potent anti-HIV-1 cytidine deaminase. Although the APOBEC3 paralogs A3A, A3B, and A3C have weaker anti-HIV-1 activities and are only partially degraded by VifIIIB, we found that VifIIIB induces their emigration from the nucleus to the cytosol and thereby causes net increases in the cytosolic concentrations and anti-HIV-1 activities of A3A and A3B. In contrast, some other Vifs, exemplified by VifHXB2 and VifELI-1, much more efficiently degrade and thereby neutralize all APOBEC3s. Studies focused mainly on A3F imply that it occurs associated with mRNA-PABP1 in translationally active polysomes and to a lesser extent in mRNA processing bodies (P-bodies). A3F appears to stabilize the P-bodies with which it is associated. A correspondingly small proportion of VifIIIB also localizes in P-bodies in an A3F-dependent manner. Stress causes A3A, A3B, A3C, and A3F to colocalize efficiently with VifIIIB and mRNA-PABP1 complexes in stress granules in a manner that is prevented by cycloheximide, an inhibitor of translational elongation. Coimmunoprecipitation studies suggest that Vifs from different HIV-1 isolates associate with all tested APOBEC3s. Thus, Vifs interact closely with structurally diverse APOBEC3s, with effects on their subcellular localization, degradation rates, and antiviral activities. Cytosolic APOBEC3-Vif complexes are predominantly bound to mRNAs that dynamically move between translationally active and storage or processing pools.
机译:VifIIIB是人免疫缺陷病毒1型(HIV-1)的病毒感染因子的标准模型,它与胞苷脱氨酶APOBEC3G(A3G)结合并诱导其降解,从而排除了其致命地掺入组装的病毒体中的可能性。此外,VifIIIB降解A3F的效率较低,A3F是另一种有效的抗HIV-1胞苷脱氨酶。尽管APOBEC3旁系同源物A3A,A3B和A3C具有较弱的抗HIV-1活性,并且仅被VifIIIB部分降解,但我们发现VifIIIB诱导其从细胞核迁移到细胞质,从而引起细胞质浓度的净增加,并且抗-A3A和A3B的HIV-1活性。相反,其他一些Vif(例如VifHXB2和VifELI-1)可以更有效地降解,从而中和所有APOBEC3。主要针对A3F的研究表明,它与mRNA-PABP1发生在翻译活性多核糖体中有关,而在mRNA加工体(P体)中则较少。 A3F似乎可以稳定与其关联的P体。 VifIIIB相应的一小部分也以A3F依赖的方式定位在P体内。应力导致A3A,A3B,A3C和A3F与VifIIIB和mRNA-PABP1复合物在应力颗粒中有效地共定位,这种方式可以通过环己酰亚胺(一种翻译伸长的抑制剂)来防止。免疫共沉淀研究表明,来自不同HIV-1分离株的Vif与所有测试的APOBEC3相关。因此,Vif与结构多样的APOBEC3紧密相互作用,并对其亚细胞定位,降解速率和抗病毒活性产生影响。胞质APOBEC3-Vif复合物主要与在翻译活性和存储或加工池之间动态移动的mRNA结合。

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