Kim Min-Jung, Kim Seon Hee, Park Jung Ae, Yu Kyung Lee, Jang Soo In, Kim Byung Soo, Lee Eun Soo, You Ji Chang
Avixgen Inc., Seoul, 137-701, Korea.
National Research Laboratory of Molecular Virology, Department of Pathology, School of Medicine, The Catholic University of Korea, Seoul, 137-701, Korea.
Retrovirology. 2015 Nov 6;12:90. doi: 10.1186/s12977-015-0218-9.
The human immunodeficiency virus type-1 (HIV-1) nucleocapsid protein (NC) is an essential and multifunctional protein involved in multiple stages of the viral life cycle such as reverse transcription, integration of proviral DNA, and especially genome RNA packaging. For this reason, it has been considered as an attractive target for the development of new anti-HIV drugs. Although a number of inhibitors of NC have been reported thus far, the search for NC-specific and functional inhibitor(s) with a good antiviral activity continues.
In this study, we report the identification of A1752, a small molecule with inhibitory action against HIV-1 NC, which shows a strong antiviral efficacy and an IC50 around 1 μM. A1752 binds directly to HIV-1 NC, thereby inhibiting specific chaperone functions of NC including Psi RNA dimerization and complementary trans-activation response element (cTAR) DNA destabilization, and it also disrupts the proper Gag processing. Further analysis of the mechanisms of action of A1752 also showed that it generates noninfectious viral particles with defects in uncoating and reverse transcription in the infected cells.
These results demonstrate that A1752 is a specific and functional inhibitor of NC with a novel mode of action and good antiviral efficacy. Thus, this agent provides a new type of anti-HIV NC inhibitor candidate for further drug development.
人类免疫缺陷病毒1型(HIV-1)核衣壳蛋白(NC)是一种必需的多功能蛋白,参与病毒生命周期的多个阶段,如逆转录、前病毒DNA整合,尤其是基因组RNA包装。因此,它被认为是开发新型抗HIV药物的一个有吸引力的靶点。尽管迄今为止已经报道了多种NC抑制剂,但寻找具有良好抗病毒活性的NC特异性和功能性抑制剂的工作仍在继续。
在本研究中,我们报告了A1752的鉴定,这是一种对HIV-1 NC具有抑制作用的小分子,其显示出强大的抗病毒功效,IC50约为1 μM。A1752直接与HIV-1 NC结合,从而抑制NC的特定伴侣功能,包括Ψ RNA二聚化和互补反式激活应答元件(cTAR)DNA去稳定化,并且它还破坏了Gag的正常加工。对A1752作用机制的进一步分析还表明,它在感染细胞中产生了在脱壳和逆转录方面存在缺陷的无感染性病毒颗粒。
这些结果表明,A1752是一种具有新型作用模式和良好抗病毒功效的NC特异性和功能性抑制剂。因此,该药物为进一步的药物开发提供了一种新型抗HIV NC抑制剂候选物。