Bogerd Hal P, Cullen Bryan R
Center for Virology, Department of Molecular Genetics and Microbiology, Duke University Medical Center, Duke University, Durham, North Carolina 27710, USA.
RNA. 2008 Jun;14(6):1228-36. doi: 10.1261/rna.964708. Epub 2008 May 2.
Binding of APOBEC3G to the nucleocapsid (NC) domain of the human immunodeficiency virus (HIV) Gag polyprotein may represent a critical early step in the selective packaging of this antiretroviral factor into HIV virions. Previously, we and others have reported that this interaction is mediated by RNA. Here, we demonstrate that RNA binding by APOBEC3G is key for initiation of APOBEC3G:NC complex formation in vitro. By adding back nucleic acids to purified, RNase-treated APOBEC3G and NC protein preparations in vitro, we demonstrate that complex formation is rescued by short (> or =10 nucleotides) single-stranded RNAs (ssRNAs) containing G residues. In contrast, complex formation is not induced by add-back of short ssRNAs lacking G, by dsRNAs, by ssDNAs, by dsDNAs or by DNA:RNA hybrid molecules. While some highly structured RNA molecules, i.e., tRNAs and rRNAs, failed to rescue APOBEC3G:NC complex formation, other structured RNAs, i.e., human Y RNAs and 7SL RNA, did promote NC binding by APOBEC3G. Together, these results indicate that ternary complex formation requires ssRNA, but suggest this can be presented in the context of an otherwise highly structured RNA molecule. Given previous data arguing that APOBEC3G binds, and edits, ssDNA effectively in vitro, these data may also suggest that APOBEC3G can exist in two different conformational states, with different activities, depending on whether it is bound to ssRNA or ssDNA.
载脂蛋白B编辑酶催化多肽样蛋白3G(APOBEC3G)与人免疫缺陷病毒(HIV)Gag多聚蛋白的核衣壳(NC)结构域的结合,可能是该抗逆转录病毒因子选择性包装进HIV病毒体的关键早期步骤。此前,我们和其他人曾报道这种相互作用是由RNA介导的。在此,我们证明APOBEC3G与RNA的结合是体外启动APOBEC3G:NC复合物形成的关键。通过在体外向纯化的、经核糖核酸酶处理的APOBEC3G和NC蛋白制剂中重新添加核酸,我们证明含有G残基的短(≥10个核苷酸)单链RNA(ssRNA)可挽救复合物的形成。相比之下,缺乏G的短ssRNA、双链RNA(dsRNA)、单链DNA(ssDNA)、双链DNA(dsDNA)或DNA:RNA杂交分子的回补均不能诱导复合物形成。虽然一些高度结构化的RNA分子,即转运RNA(tRNA)和核糖体RNA(rRNA),未能挽救APOBEC3G:NC复合物的形成,但其他结构化RNA,即人Y RNA和7SL RNA,确实促进了APOBEC3G与NC的结合。总之,这些结果表明三元复合物的形成需要ssRNA,但表明这可以在其他高度结构化的RNA分子背景下呈现。鉴于之前的数据表明APOBEC3G在体外能有效结合并编辑ssDNA,这些数据也可能表明APOBEC3G可以存在两种不同的构象状态,具有不同的活性,这取决于它是与ssRNA还是ssDNA结合。