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泛素连接酶Cullin-ElonginB-ElonginC复合物在牛免疫缺陷病毒和梅迪-维斯纳病毒Vif介导的宿主A3Z2-Z3蛋白降解中的作用

Role of cullin-elonginB-elonginC E3 complex in bovine immunodeficiency virus and maedi-visna virus Vif-mediated degradation of host A3Z2-Z3 proteins.

作者信息

Zhang Jingyao, Wu Jiaxin, Wang Weiran, Wu Hui, Yu Bin, Wang Jiawen, Lv Mingyu, Wang Xiaodan, Zhang Haihong, Kong Wei, Yu Xianghui

出版信息

Retrovirology. 2014 Sep 12;11:77. doi: 10.1186/s12977-014-0077-9.

Abstract

BACKGROUND

All lentiviruses except equine infectious anemia virus (EIVA) antagonize antiviral family APOBEC3 (A3) proteins of the host through viral Vif proteins. The mechanism by which Vif of human, simian or feline immunodeficiency viruses (HIV/SIV/FIV) suppresses the corresponding host A3s has been studied extensively.

RESULTS

Here, we determined that bovine immunodeficiency virus (BIV) and maedi-visna virus (MVV) Vif proteins utilize the Cullin (Cul)-ElonginB (EloB)-ElonginC (EloC) complex (BIV Vif recruits Cul2, while MVV Vif recruits Cul5) to degrade Bos taurus (bt)A3Z2-Z3 and Ovis aries (oa)A3Z2-Z3, respectively, via a proteasome-dependent but a CBF-β-independent pathway. Mutation of the BC box in BIV and MVV Vif, C-terminal hydrophilic replacement of btEloC and oaEloC and dominant-negative mutants of btCul2 and oaCul5 could disrupt the activity of BIV and MVV Vif, respectively. While the membrane-permeable zinc chelator TPEN could block BIV Vif-mediated degradation of btA3Z2-Z3, it had minimal effects on oaA3Z2-Z3 degradation induced by MVV Vif, indicating that Zn is important for the activity of BIV Vif but not MVV Vif. Furthermore, we identified a previously unreported zinc binding loop [C-x1-C-x1-H-x19-C] in the BIV Vif upstream BC box which is critical for its degradation activity.

CONCLUSIONS

A novel zinc binding loop was identified in the BIV Vif protein that is important for the E3 ubiquination activity, suggesting that the degradation of btA3Z2-Z3 by BIV and that of oaA3Z2-Z3 by MVV Vif may need host factors other than CBF-β.

摘要

背景

除马传染性贫血病毒(EIAV)外,所有慢病毒都通过病毒Vif蛋白拮抗宿主的抗病毒A3家族(APOBEC3,A3)蛋白。人类、猿猴或猫免疫缺陷病毒(HIV/SIV/FIV)的Vif抑制相应宿主A3的机制已得到广泛研究。

结果

在此,我们确定牛免疫缺陷病毒(BIV)和梅迪 - 维斯纳病毒(MVV)的Vif蛋白利用Cullin(Cul)-ElonginB(EloB)-ElonginC(EloC)复合物(BIV Vif招募Cul2,而MVV Vif招募Cul5),分别通过蛋白酶体依赖性但CBF-β非依赖性途径降解牛(bt)A3Z2 - Z3和羊(oa)A3Z2 - Z3。BIV和MVV Vif中BC盒的突变、btEloC和oaEloC的C末端亲水性置换以及btCul2和oaCul5的显性负性突变体分别可破坏BIV和MVV Vif的活性。虽然膜通透性锌螯合剂TPEN可阻断BIV Vif介导的btA3Z2 - Z3降解,但对MVV Vif诱导的oaA3Z2 - Z3降解影响极小,表明锌对BIV Vif的活性很重要,而对MVV Vif的活性不重要。此外,我们在BIV Vif上游BC盒中鉴定出一个先前未报道的锌结合环[C - x1 - C - x1 - H - x19 - C],其对降解活性至关重要。

结论

在BIV Vif蛋白中鉴定出一个对E3泛素化活性很重要的新型锌结合环,表明BIV对btA3Z2 - Z3的降解以及MVV Vif对oaA3Z2 - Z3的降解可能需要除CBF-β之外的宿主因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e90/4172784/677bbbb3c967/12977_2014_77_Fig1_HTML.jpg

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