阿片类药物的使用并不限制有效的低剂量HIV-1潜伏逆转剂的增强。

Tyler Lilie, Jennifer Bouzy, Archana Asundi, Jessica Taylor, Samantha Roche, Alex Olson, Kendyll Coxen, Heather Corry, Hannah Jordan, Kiera Clayton, Nina Lin, Athe Tsibris
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引用次数: 0

摘要

HIV-1和阿片类药物流行对病毒库动态的综合影响尚不清楚。为了评估阿片类药物的使用对HIV-1潜伏逆转的影响,我们研究了47名受抑制的HIV-1参与者,并观察到较低浓度的联合潜伏逆转剂(LRA)会导致协同病毒在体外重新激活,而与阿片类药的使用无关。Smac模拟物或低剂量蛋白激酶C激动剂,即单独不能逆转潜伏期的化合物,与低剂量组蛋白脱乙酰酶抑制剂联合使用,产生的HIV-1转录显著多于佛波醇12-肉豆蔻酸13-乙酸酯(PMA)和离子霉素(已知的最大HIV-1再激活剂)。这种LRA增强没有性别或种族差异,并且与CD4+T细胞中更大的组蛋白乙酰化和T细胞表型的调节有关。病毒产生和多重剪接HIV-1转录物的频率没有增加,这表明转录后阻断仍然限制了HIV-1 LRA的有效增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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HIV-1 latency reversal agent boosting is not limited by opioid use.

The opioid epidemic may impact the HIV-1 reservoir and its reversal from latency in virally suppressed people with HIV (PWH). We studied forty-seven PWH and observed that lowering the concentration of HIV-1 latency reversal agents (LRA), used in combination with small molecules that do not reverse latency, synergistically increases the magnitude of HIV-1 re-activation ex vivo, regardless of opioid use. This LRA boosting, which combines a Smac mimetic or low-dose protein kinase C agonist with histone deacetylase inhibitors, can generate significantly more unspliced HIV-1 transcription than phorbol 12-myristate 13-acetate (PMA) with ionomycin (PMAi), the maximal known HIV-1 reactivator. LRA boosting associated with greater histone acetylation in CD4+ T cells and modulated T cell activation-induced markers and intracellular cytokine production; Smac mimetic-based boosting was less likely to induce immune activation. We found that HIV-1 reservoirs in PWH contain unspliced and polyadenylated (polyA) virus mRNA, the ratios of which are greater in resting than total CD4+ T cells and can correct to 1:1 with PMAi exposure. Latency reversal results in greater fold-change increases to HIV-1 poly(A) mRNA than unspliced message. Multiply spliced HIV-1 transcripts and virion production did not consistently increase with LRA boosting, suggesting the presence of a persistent post-transcriptional block. LRA boosting can be leveraged to probe the mechanisms of an effective cellular HIV-1 latency reversal program.

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