首页> 外文期刊>Microbiology and Immunology >Small ruminant lentiviral Vif proteins commonly utilize cyclophilin A, an evolutionarily and structurally conserved protein, to degrade ovine and caprine APOBEC3 proteins
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Small ruminant lentiviral Vif proteins commonly utilize cyclophilin A, an evolutionarily and structurally conserved protein, to degrade ovine and caprine APOBEC3 proteins

机译:小反刍动物慢病毒Vif蛋白通常利用亲环蛋白A(一种进化上和结构上保守的蛋白)降解绵羊和山羊APOBEC3蛋白

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摘要

Mammals have co-evolved with retroviruses, including lentiviruses, over a long period. Evidence supporting this contention is that viral infectivity factor (Vif) encoded by lentiviruses antagonizes the anti-viral action of cellular apolipoprotein B mRNA editing enzyme catalytic polypeptide-like 3 (APOBEC3) of the host. To orchestrate E3 ubiquitin ligase complex for APOBEC3 degradation, Vifs utilize mammalian proteins such as core-binding factor beta (CBFB; for primate lentiviruses) or cyclophilin A (CYPA; for Maedi-Visna virus [MVV]). However, the co-evolutionary relationship between lentiviral Vif and the mammalian proteins associated with Vif-mediated APOBEC3 degradation is poorly understood. Moreover, it is unclear whether Vif proteins of small ruminant lentiviruses (SRLVs), including MVV and caprine arthritis encephalitis virus (CAEV), commonly utilize CYPA to degrade the APOBEC3 of their hosts. In this study, molecular phylogenetic and protein homology modeling revealed that Vif co-factors are evolutionarily and structurally conserved. It was also found that not only MVV but also CAEV Vifs degrade APOBEC3 of both sheep and goats and that CAEV Vifs interact with CYPA. These findings suggest that lentiviral Vifs chose evolutionarily and structurally stable proteins as their partners (e.g., CBFB or CYPA) for APOBEC3 degradation and, particularly, that SRLV Vifs evolved to utilize CYPA as their co-factor in degradation of ovine and caprine APOBEC3.
机译:哺乳动物已经与逆转录病毒,包括慢病毒,共同进化了很长时间。支持这一观点的证据是,慢病毒编码的病毒感染因子(Vif)拮抗宿主的细胞载脂蛋白B mRNA编辑酶催化性多肽样3(APOBEC3)的抗病毒作用。为了协调E3泛素连接酶复合物的APOBEC3降解,Vifs利用哺乳动物蛋白,例如核心结合因子β(CBFB;灵长类慢病毒)或亲环蛋白A(CYPA; Maedi-Visna病毒[MVV])。但是,人们对慢病毒Vif和与Vif介导的APOBEC3降解相关的哺乳动物蛋白之间的共同进化关系了解得很少。此外,尚不清楚小型反刍动物慢病毒(SRLV)的Vif蛋白(包括MVV和山羊关节炎脑炎病毒(CAEV))是否通常利用CYPA降解其宿主的APOBEC3。在这项研究中,分子系统发育和蛋白质同源性建模显示,Vif辅助因子在进化和结构上都是保守的。还发现不仅MVV而且CAEV Vifs都降解绵羊和山羊的APOBEC3,并且CAEV Vifs与CYPA相互作用。这些发现表明慢病毒Vifs选择了进化上和结构上稳定的蛋白质作为其APOBEC3降解的伴侣(例如CBFB或CYPA),特别是SRLV Vifs进化为利用CYPA作为它们在绵羊和山羊APOBEC3降解中的辅助因子。

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