The APOBEC3 family of cytidine deaminases restricts retroviruses like HIV-1 by mutating viral DNA. HIV-1 evades this restriction by producing Vif, which recruits the Cullin-5 (CUL5) E3 ubiquitin ligase complex to promote APOBEC3 degradation. Here we resolve key aspects of this counter-defense mechanism by determining a 3.6âà cryo-EM structure of chimpanzee APOBEC3H (cpzA3H) in complex with HIV-1 Vif and three components of the CUL5 E3 ligase-CBFβ, EloB, and EloC (VCBC). The structure captures cpzA3H as an RNA-mediated dimer within the cpzA3H-VCBC complex, allowing us to examine the role of dimerization. We find that ubiquitination occurs specifically at two lysine residues on the Vif-proximal protomer, while the distal protomer remains unmodified. The structural model of the active cpzA3H-Vif-CUL5 E3 ligase holoenzyme reveals spatial preferences for ubiquitin transfer to the targeted lysine residues. These findings enhance our understanding of A3H degradation and suggest new antiviral strategies targeting this host-virus interface.
HIV-1 vif mediates ubiquitination of the proximal protomer in the APOBEC3H dimer to induce degradation.
HIV-1 vif 介导 APOBEC3H 二聚体近端亚基的泛素化,从而诱导降解
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作者:Skorupka Katarzyna A, Matsuoka Kazuhiro, Hassan Bakar, Ghirlando Rodolfo, Balachandran Vanivilasini, Chen Ting-Hua, Walters Kylie J, Schiffer Celia A, Wolf Matthias, Iwatani Yasumasa, Matsuo Hiroshi
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Jul 1; 16(1):5879 |
| doi: | 10.1038/s41467-025-60984-y | 研究方向: | 表观遗传 |
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