Zaitseva Lyubov, Cherepanov Peter, Leyens Lada, Wilson Sam J, Rasaiyaah Jane, Fassati Ariberto
Wohl Virion Centre, Division of Infection and Immunity, University College London, London, UK.
Retrovirology. 2009 Feb 4;6:11. doi: 10.1186/1742-4690-6-11.
Nuclear import of the HIV-1 reverse transcription complex (RTC) is critical for infection of non dividing cells, and importin 7 (imp7) has been implicated in this process. To further characterize the function of imp7 in HIV-1 replication we generated cell lines stably depleted for imp7 and used them in conjunction with infection, cellular fractionation and pull-down assays.
Imp7 depletion impaired HIV-1 infection but did not significantly affect HIV-2, simian immunodeficiency virus (SIVmac), or equine infectious anemia virus (EIAV). The lentiviral dependence on imp7 closely correlated with binding of the respective integrase proteins to imp7. HIV-1 RTC associated with nuclei of infected cells with remarkable speed and knock down of imp7 reduced HIV-1 DNA nuclear accumulation, delaying infection. Using an HIV-1 mutant deficient for reverse transcription, we found that viral RNA accumulated within nuclei of infected cells, indicating that reverse transcription is not absolutely required for nuclear import. Depletion of imp7 impacted on HIV-1 DNA but not RNA nuclear import and also inhibited DNA transfection efficiency.
Although imp7 may not be essential for HIV-1 infection, our results suggest that imp7 facilitates nuclear trafficking of DNA and that HIV-1 exploits imp7 to maximize nuclear import of its DNA genome. Lentiviruses other than HIV-1 may have evolved to use alternative nuclear import receptors to the same end.
HIV-1逆转录复合物(RTC)的核输入对于非分裂细胞的感染至关重要,且输入蛋白7(imp7)参与了这一过程。为了进一步阐明imp7在HIV-1复制中的功能,我们构建了稳定缺失imp7的细胞系,并将其用于感染、细胞分级分离和下拉实验。
imp7的缺失损害了HIV-1感染,但对HIV-2、猴免疫缺陷病毒(SIVmac)或马传染性贫血病毒(EIAV)没有显著影响。慢病毒对imp7的依赖性与各自整合酶蛋白与imp7的结合密切相关。HIV-1 RTC以显著的速度与被感染细胞的细胞核结合,敲低imp7会减少HIV-1 DNA的核积累,从而延迟感染。使用一种缺乏逆转录功能的HIV-1突变体,我们发现病毒RNA在被感染细胞的细胞核内积累,这表明逆转录对于核输入并非绝对必要。imp7的缺失影响HIV-1 DNA而非RNA的核输入,并且还抑制DNA转染效率。
虽然imp7对于HIV-1感染可能并非必不可少,但我们的结果表明imp7促进了DNA的核运输,并且HIV-1利用imp7来最大化其DNA基因组的核输入。除HIV-1之外的慢病毒可能已经进化出使用替代核输入受体来达到相同目的。