首页> 外文期刊>Nucleic Acids Research >Mutational comparison of the single-domained APOBEC3C and double-domained APOBEC3F/G anti-retroviral cytidine deaminases provides insight into their DNA target site specificities
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Mutational comparison of the single-domained APOBEC3C and double-domained APOBEC3F/G anti-retroviral cytidine deaminases provides insight into their DNA target site specificities

机译:单结构域APOBEC3C和双结构域APOBEC3F / G抗逆转录病毒胞苷脱氨酶的突变比较可深入了解其DNA靶位点特异性

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摘要

Human APOBEC3F and APOBEC3G are double-domained deaminases that can catalyze dC -> dU deamination in HIV-1 and MLV retroviral DNA replication intermediates, targeting T-C or C-C dinucleotides, respectively. HIV-1 antagonizes their action through its vif gene product, which has been shown (at least in the case of APOBEC3G) to interact with the N-terminal domain of the deaminase, triggering its degradation. Here, we compare APOBEC3F and APOBEC3G to APOBEC3C, a single-domained deaminase that can also act on both HIV-1 and MLV. We find that whereas APOBEC3C contains all the information necessary for both Vif-binding and cytidine deaminase activity in a single domain, it is the C-terminal domain of APOBEC3F and APOBEC3G that confer their target site specificity for cytidine deamination. We have exploited the fact that APOBEC3C, whilst highly homologous to the C-terminal domain of APOBEC3F, exhibits a distinct target site specificity (preferring Y-C dinucleotides) in order to identify residues in APOBEC3F that might affect its target site specificity. We find that this specificity can be altered by single amino acid substitutions at several distinct positions, suggesting that the strong dependence of APOBEC3-mediated deoxycytidine deamination on the 5'-flanking nucleotide is sensitive to relatively subtle changes in the APOBEC3 structure. The approach has allowed the isolation of APOBEC3 DNA mutators that exhibit novel target site preferences.
机译:人APOBEC3F和APOBEC3G是双域脱氨基酶,可催化HIV-1和MLV逆转录病毒DNA复制中间体中的dC-> dU脱氨,分别靶向T-C或C-C二核苷酸。 HIV-1通过其vif基因产物拮抗其作用,该产物已显示(至少在APOBEC3G中如此)与脱氨酶的N末端结构域相互作用,触发其降解。在这里,我们将APOBEC3F和APOBEC3G与APOBEC3C(一种单域脱氨酶,也可以对HIV-1和MLV起作用)进行比较。我们发现,虽然APOBEC3C在单个域中包含Vif结合和胞苷脱氨酶活性所需的所有信息,但APOBEC3F和APOBEC3G的C末端结构域赋予了胞苷脱氨的目标位点特异性。我们已经利用了一个事实,即APOBEC3C与APOBEC3F的C末端结构域高度同源,但表现出独特的靶位点特异性(优选Y-C二核苷酸),以便鉴定APOBEC3F中可能影响其靶位点特异性的残基。我们发现,可以通过在几个不同位置的单个氨基酸取代来改变这种特异性,这表明APOBEC3介导的脱氧胞苷脱氨对5'侧翼核苷酸的强烈依赖性对APOBEC3结构中的相对细微变化敏感。该方法已允许分离出表现出新的靶位点偏好的APOBEC3 DNA突变体。

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