Department of Global Health, University of Washington, 1616 Eastlake Ave. East, Suite 305, Seattle, WA 98102, USA.
J Virol. 2011 Jul;85(14):7419-35. doi: 10.1128/JVI.00288-11. Epub 2011 May 4.
During HIV-1 assembly, Gag polypeptides multimerize to form an immature capsid and also package HIV-1 genomic RNA. Assembling Gag forms immature capsids by progressing through a stepwise pathway of assembly intermediates containing the cellular ATPase ABCE1, which facilitates capsid formation. The NC domain of Gag is required for ABCE1 binding, acting either directly or indirectly. NC is also critical for Gag multimerization and RNA binding. Previous studies of GagZip chimeric proteins in which NC was replaced with a heterologous leucine zipper that promotes protein dimerization but not RNA binding established that the RNA binding properties of NC are dispensable for capsid formation per se. Here we utilized GagZip proteins to address the question of whether the RNA binding properties of NC are required for ABCE1 binding and for the formation of ABCE1-containing capsid assembly intermediates. We found that assembly-competent HIV-1 GagZip proteins formed ABCE1-containing intermediates, while assembly-incompetent HIV-1 GagZip proteins harboring mutations in residues critical for leucine zipper dimerization did not. Thus, these data suggest that ABCE1 does not bind to NC directly or through an RNA bridge, and they support a model in which dimerization of Gag, mediated by NC or a zipper, results in exposure of an ABCE1-binding domain located elsewhere in Gag, outside NC. Additionally, we demonstrated that immature capsids formed by GagZip proteins are insensitive to RNase A, as expected. However, unexpectedly, immature HIV-1 capsids were almost as insensitive to RNase A as GagZip capsids, suggesting that RNA is not a structural element holding together immature wild-type HIV-1 capsids.
在 HIV-1 组装过程中,Gag 多聚体形成不成熟的衣壳并包装 HIV-1 基因组 RNA。组装 Gag 通过包含细胞 ATP 酶 ABCE1 的逐步组装中间体途径形成不成熟衣壳,该酶促进衣壳形成。Gag 的 NC 结构域是 ABCE1 结合所必需的,无论是直接还是间接作用。NC 对于 Gag 多聚体化和 RNA 结合也至关重要。以前的研究表明,用促进蛋白质二聚化但不结合 RNA 的异源亮氨酸拉链替换 GagZip 嵌合蛋白中的 NC 后,NC 的 RNA 结合特性对于衣壳形成本身是可有可无的。在这里,我们利用 GagZip 蛋白来解决 NC 的 RNA 结合特性是否需要 ABCE1 结合和形成包含 ABCE1 的衣壳组装中间体的问题。我们发现,具有组装能力的 HIV-1 GagZip 蛋白形成了包含 ABCE1 的中间体,而具有关键亮氨酸拉链二聚化残基突变的不具有组装能力的 HIV-1 GagZip 蛋白则没有。因此,这些数据表明 ABCE1 不是直接或通过 RNA 桥结合到 NC,并且它们支持这样一种模型,即 Gag 的二聚化,由 NC 或拉链介导,导致暴露位于 NC 之外的 Gag 中其他位置的 ABCE1 结合域。此外,我们证明 GagZip 蛋白形成的不成熟衣壳对 RNase A 不敏感,如预期的那样。然而,出乎意料的是,不成熟的 HIV-1 衣壳对 RNase A 的敏感性几乎与 GagZip 衣壳一样,这表明 RNA 不是将不成熟的野生型 HIV-1 衣壳保持在一起的结构元件。