Cheng Zetao, Nikolaitchik Olga A, Duchon Alice, Rawson Jonathan M O, Pathak Vinay K, Hu Wei-Shau
Viral Recombination Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702, USA.
Viral Mutation Section, HIV Dynamics and Replication Program, National Cancer Institute, Frederick, MD 21702, USA.
Viruses. 2025 Apr 10;17(4):551. doi: 10.3390/v17040551.
During retrovirus assembly, Gag packages unspliced viral RNA as the virion genome. Genome packaging is usually specific with occasional exceptions of cross-packaging RNA from distantly related retroviruses. For example, HIV-1 Gag can efficiently package HIV-2 RNA. To better understand how HIV-1 Gag selects packaging substrates, we defined elements in the HIV-2 5' untranslated region (UTR) that are important for this process. Although sharing little homology, both HIV-1 and HIV-2 5' UTRs have unpaired guanosines essential for packaging by their own Gag. Simultaneously substituting guanosines of nine sites in the HIV-2 5' UTR caused severe defects in HIV-1 Gag-mediated packaging. Two of the nine sites are particularly important, mutating each one impaired HIV-1 Gag-mediated packaging, whereas the other sites required mutations in multiple sites to produce similar effects. Additionally, we identified one site that impacts HIV-1 Gag but is dispensable for HIV-2 Gag selective packaging. Furthermore, combining mutations has an additive effect on packaging defects for HIV-1 Gag, in contrast to the previously reported synergistic effects for HIV-2 Gag. Our study demonstrates that Gag proteins from two different retroviruses recognize and use mostly the same set of cis-acting elements to mediate RNA packaging and provide the mechanistic basis for genome cross-packaging.
在逆转录病毒组装过程中,Gag将未剪接的病毒RNA包装为病毒粒子基因组。基因组包装通常具有特异性,偶尔会出现从远亲逆转录病毒交叉包装RNA的例外情况。例如,HIV-1 Gag可以有效地包装HIV-2 RNA。为了更好地理解HIV-1 Gag如何选择包装底物,我们确定了HIV-2 5'非翻译区(UTR)中对该过程重要的元件。尽管HIV-1和HIV-2的5'UTR同源性很低,但它们都有未配对的鸟苷,这对于各自的Gag进行包装至关重要。同时替换HIV-2 5'UTR中九个位点的鸟苷会导致HIV-1 Gag介导的包装出现严重缺陷。九个位点中的两个尤为重要,突变其中任何一个都会损害HIV-1 Gag介导的包装,而其他位点则需要多个位点发生突变才能产生类似效果。此外,我们确定了一个影响HIV-1 Gag但对HIV-2 Gag选择性包装可有可无的位点。此外,与之前报道的HIV-2 Gag的协同效应相反,组合突变对HIV-1 Gag的包装缺陷具有累加效应。我们的研究表明,来自两种不同逆转录病毒的Gag蛋白识别并使用大致相同的一组顺式作用元件来介导RNA包装,并为基因组交叉包装提供了机制基础。