Martinez Zachary S, Castro Edison, Seong Chang-Soo, Cerón Maira R, Echegoyen Luis, Llano Manuel
Department of Biological Sciences, University of Texas at El Paso, El Paso, Texas, USA.
Department of Chemistry, University of Texas at El Paso, El Paso, Texas, USA.
Antimicrob Agents Chemother. 2016 Sep 23;60(10):5731-41. doi: 10.1128/AAC.00341-16. Print 2016 Oct.
Three compounds (1, 2, and 3) previously reported to inhibit HIV-1 replication and/or in vitro activity of reverse transcriptase were studied, but only fullerene derivatives 1 and 2 showed strong antiviral activity on the replication of HIV-1 in human CD4(+) T cells. However, these compounds did not inhibit infection by single-round infection vesicular stomatitis virus glycoprotein G (VSV-G)-pseudotyped viruses, indicating no effect on the early steps of the viral life cycle. In contrast, analysis of single-round infection VSV-G-pseudotyped HIV-1 produced in the presence of compound 1 or 2 showed a complete lack of infectivity in human CD4(+) T cells, suggesting that the late stages of the HIV-1 life cycle were affected. Quantification of virion-associated viral RNA and p24 indicates that RNA packaging and viral production were unremarkable in these viruses. However, Gag and Gag-Pol processing was affected, as evidenced by immunoblot analysis with an anti-p24 antibody and the measurement of virion-associated reverse transcriptase activity, ratifying the effect of the fullerene derivatives on virion maturation of the HIV-1 life cycle. Surprisingly, fullerenes 1 and 2 did not inhibit HIV-1 protease in an in vitro assay at the doses that potently blocked viral infectivity, suggesting a protease-independent mechanism of action. Highlighting the potential therapeutic relevance of fullerene derivatives, these compounds block infection by HIV-1 resistant to protease and maturation inhibitors.
对先前报道的三种抑制HIV-1复制和/或逆转录酶体外活性的化合物(1、2和3)进行了研究,但只有富勒烯衍生物1和2对HIV-1在人CD4(+) T细胞中的复制表现出强大的抗病毒活性。然而,这些化合物并不抑制单轮感染的水泡性口炎病毒糖蛋白G(VSV-G)假型病毒的感染,表明对病毒生命周期的早期步骤没有影响。相反,对在化合物1或2存在下产生的单轮感染VSV-G假型HIV-1的分析表明,其在人CD4(+) T细胞中完全缺乏感染性,这表明HIV-1生命周期的后期阶段受到了影响。对病毒体相关病毒RNA和p24的定量分析表明,这些病毒中的RNA包装和病毒产生没有明显异常。然而,Gag和Gag-Pol的加工受到了影响,这通过用抗p24抗体进行免疫印迹分析以及测量病毒体相关逆转录酶活性得到了证实,从而认可了富勒烯衍生物对HIV-1生命周期中病毒体成熟的影响。令人惊讶的是,在有效阻断病毒感染性的剂量下,富勒烯1和2在体外试验中并不抑制HIV-1蛋白酶,这表明其作用机制不依赖于蛋白酶。这些化合物能够阻断对蛋白酶和成熟抑制剂耐药的HIV-1的感染,突出了富勒烯衍生物潜在的治疗相关性。