Department of Medicine, Boston University School of Medicine, Boston, MA 02118, USA.
J Leukoc Biol. 2012 Dec;92(6):1147-54. doi: 10.1189/jlb.0312165. Epub 2012 Jul 16.
The persistence of latent HIV-1 remains a major challenge in therapeutic efforts to eradicate infection. We report the capacity for HIV reactivation by a selective small molecule inhibitor of BET family bromodomains, JQ1, a promising therapeutic agent with antioncogenic properties. JQ1 reactivated HIV transcription in models of latent T cell infection and latent monocyte infection. We also tested the effect of exposure to JQ1 to allow recovery of replication-competent HIV from pools of resting CD4(+) T cells isolated from HIV-infected, ART-treated patients. In one of three patients, JQ1 allowed recovery of virus at a frequency above unstimulated conditions. JQ1 potently suppressed T cell proliferation with minimal cytotoxic effect. Transcriptional profiling of T cells with JQ1 showed potent down-regulation of T cell activation genes, including CD3, CD28, and CXCR4, similar to HDAC inhibitors, but JQ1 also showed potent up-regulation of chromatin modification genes, including SIRT1, HDAC6, and multiple lysine demethylases (KDMs). Thus, JQ1 reactivates HIV-1 while suppressing T cell activation genes and up-regulating histone modification genes predicted to favor increased Tat activity. Thus, JQ1 may be useful in studies of potentially novel mechanisms for transcriptional control as well as in translational efforts to identify therapeutic molecules to achieve viral eradication.
潜伏的 HIV-1 的持续存在仍然是治疗努力根除感染的主要挑战。我们报告了一种选择性的 BET 家族溴结构域小分子抑制剂 JQ1 激活 HIV 的能力,JQ1 是一种具有抗肿瘤特性的有前途的治疗剂。JQ1 在潜伏 T 细胞感染和潜伏单核细胞感染模型中激活了 HIV 转录。我们还测试了暴露于 JQ1 以允许从从接受过 ART 治疗的 HIV 感染患者中分离的静止 CD4(+)T 细胞池中恢复复制能力的 HIV 的效果。在三名患者中的一名中,JQ1 以高于未刺激条件的频率允许病毒恢复。JQ1 强力抑制 T 细胞增殖,而对细胞毒性的影响最小。用 JQ1 进行的 T 细胞转录组分析显示,T 细胞激活基因(包括 CD3、CD28 和 CXCR4)被强烈下调,与 HDAC 抑制剂相似,但 JQ1 还强烈上调染色质修饰基因,包括 SIRT1、HDAC6 和多种赖氨酸去甲基酶(KDMs)。因此,JQ1 既能激活 HIV-1,又能抑制 T 细胞激活基因,并上调组蛋白修饰基因,这有望增加 Tat 活性。因此,JQ1 可能在研究潜在的转录控制新机制以及在识别实现病毒清除的治疗分子的转化努力中有用。