Wu Weilin, Kehn-Hall Kylene, Pedati Caitlin, Zweier Lynnsey, Castro Iris, Klase Zachary, Dowd Cynthia S, Dubrovsky Larisa, Bukrinsky Michael, Kashanchi Fatah
The George Washington University Medical Center, Department of Biochemistry and Molecular Biology, Washington, DC 20037, USA.
Virol J. 2008 Mar 18;5:41. doi: 10.1186/1743-422X-5-41.
It has been demonstrated that the p53 pathway plays an important role in HIV-1 infection. Previous work from our lab has established a model demonstrating how p53 could become inactivated in HIV-1 infected cells through binding to Tat. Subsequently, p53 was inactivated and lost its ability to transactivate its downstream target gene p21/waf1. P21/waf1 is a well-known cdk inhibitor (CKI) that can lead to cell cycle arrest upon DNA damage. Most recently, the p21/waf1 function was further investigated as a molecular barrier for HIV-1 infection of stem cells. Therefore, we reason that the restoration of the p53 and p21/waf1 pathways could be a possible theraputical arsenal for combating HIV-1 infection. In this current study, we show that a small chemical molecule, 9-aminoacridine (9AA) at low concentrations, could efficiently reactivate p53 pathway and thereby restoring the p21/waf1 function. Further, we show that the 9AA could significantly inhibit virus replication in activated PBMCs, likely through a mechanism of inhibiting the viral replication machinery. A mechanism study reveals that the phosphorylated p53ser15 may be dissociated from binding to HIV-1 Tat protein, thereby activating the p21/waf1 gene. Finally, we also show that the 9AA-activated p21/waf1 is recruited to HIV-1 preintegration complex, through a mechanism yet to be elucidated.
已证明p53信号通路在HIV-1感染中起重要作用。我们实验室之前的工作建立了一个模型,展示了p53如何通过与Tat结合在HIV-1感染的细胞中失活。随后,p53失活并失去了反式激活其下游靶基因p21/waf1的能力。P21/waf1是一种著名的细胞周期蛋白依赖性激酶抑制剂(CKI),在DNA损伤时可导致细胞周期停滞。最近,p21/waf1的功能作为干细胞HIV-1感染的分子屏障得到了进一步研究。因此,我们推断恢复p53和p21/waf1信号通路可能是对抗HIV-1感染的一种可能的治疗手段。在本研究中,我们表明低浓度的小分子9-氨基吖啶(9AA)可以有效地重新激活p53信号通路,从而恢复p21/waf1的功能。此外,我们表明9AA可以显著抑制活化的外周血单核细胞中的病毒复制,可能是通过抑制病毒复制机制。机制研究表明,磷酸化的p53ser15可能与HIV-1 Tat蛋白解离,从而激活p21/waf1基因。最后,我们还表明,9AA激活的p21/waf1通过一种尚待阐明的机制被招募到HIV-1整合前复合物中。