Department of Microbiology, Immunology, & Tropical Medicine, The George Washington Universitygrid.253615.6, Washington, DC, USA.
Computational Biology Institute, Milken Institute School of Public Health, The George Washington Universitygrid.253615.6, Washington, DC, USA.
J Virol. 2022 Aug 10;96(15):e0037222. doi: 10.1128/jvi.00372-22. Epub 2022 Jul 14.
Elimination of human immunodeficiency virus (HIV) reservoirs is a critical endpoint to eradicate HIV. One therapeutic intervention against latent HIV is "shock and kill." This strategy is based on the transcriptional activation of latent HIV with a latency-reversing agent (LRA) with the consequent killing of the reactivated cell by either the cytopathic effect of HIV or the immune system. We have previously found that the small molecule 3-hydroxy-1,2,3-benzotriazin-4(3H)-one (HODHBt) acts as an LRA by increasing signal transducer and activator of transcription (STAT) factor activation mediated by interleukin-15 (IL-15) in cells isolated from aviremic participants. The IL-15 superagonist N-803 is currently under clinical investigation to eliminate latent reservoirs. IL-15 and N-803 share similar mechanisms of action by promoting the activation of STATs and have shown some promise in preclinical models directed toward HIV eradication. In this work, we evaluated the ability of HODHBt to enhance IL-15 signaling in natural killer (NK) cells and the biological consequences associated with increased STAT activation in NK cell effector and memory-like functions. We showed that HODHBt increased IL-15-mediated STAT phosphorylation in NK cells, resulting in increases in the secretion of CXCL-10 and interferon gamma (IFN-γ) and the expression of cytotoxic proteins, including granzyme B, granzyme A, perforin, granulysin, FASL, and TRAIL. This increased cytotoxic profile results in increased cytotoxicity against HIV-infected cells and different tumor cell lines. HODHBt also improved the generation of cytokine-induced memory-like NK cells. Overall, our data demonstrate that enhancing the magnitude of IL-15 signaling with HODHBt favors NK cell cytotoxicity and memory-like generation, and thus, targeting this pathway could be further explored for HIV cure interventions. Several clinical trials targeting the HIV latent reservoir with LRAs have been completed. In spite of a lack of clinical benefit, they have been crucial to elucidate hurdles that "shock and kill" strategies have to overcome to promote an effective reduction of the latent reservoir to lead to a cure. These hurdles include low reactivation potential mediated by LRAs, the negative influence of some LRAs on the activity of natural killer and effector CD8 T cells, an increased resistance to apoptosis of latently infected cells, and an exhausted immune system due to chronic inflammation. To that end, finding therapeutic strategies that can overcome some of these challenges could improve the outcome of shock and kill strategies aimed at HIV eradication. Here, we show that the LRA HODHBt also improves IL-15-mediated NK cell effector and memory-like functions. As such, pharmacological enhancement of IL-15-mediated STAT activation can open new therapeutic avenues toward an HIV cure.
消除人类免疫缺陷病毒 (HIV) 储存库是根除 HIV 的关键终点。针对潜伏 HIV 的一种治疗干预措施是“震撼和杀伤”。该策略基于潜伏 HIV 的转录激活,使用潜伏逆转剂 (LRA) 进行激活,随后通过 HIV 的细胞病变效应或免疫系统杀死再激活的细胞。我们之前发现,小分子 3-羟基-1,2,3-苯并三嗪-4(3H)-酮 (HODHBt) 通过增加白细胞介素-15 (IL-15) 介导的信号转导和转录激活因子 (STAT) 因子激活,作为 LRA 发挥作用在来自无病毒参与者的细胞中。IL-15 超级激动剂 N-803 目前正在临床研究中用于消除潜伏储存库。IL-15 和 N-803 通过促进 STAT 的激活具有相似的作用机制,并在针对 HIV 根除的临床前模型中显示出一定的前景。在这项工作中,我们评估了 HODHBt 增强自然杀伤 (NK) 细胞中 IL-15 信号传导的能力,以及与 NK 细胞效应器和记忆样功能中 STAT 激活增加相关的生物学后果。我们表明,HODHBt 增加了 NK 细胞中 IL-15 介导的 STAT 磷酸化,导致 CXCL-10 和干扰素 γ (IFN-γ) 的分泌增加,以及细胞毒性蛋白,包括颗粒酶 B、颗粒酶 A、穿孔素、颗粒溶素、FASL 和 TRAIL 的表达增加。这种增加的细胞毒性谱导致对 HIV 感染细胞和不同肿瘤细胞系的细胞毒性增加。HODHBt 还改善了细胞因子诱导的记忆样 NK 细胞的生成。总的来说,我们的数据表明,用 HODHBt 增强 IL-15 信号的幅度有利于 NK 细胞的细胞毒性和记忆样生成,因此,针对该途径的治疗可以进一步探索用于 HIV 治愈干预。已经完成了几项针对 HIV 潜伏储存库的 LRA 的临床试验。尽管没有临床获益,但它们对于阐明“震撼和杀伤”策略必须克服的障碍至关重要,这些障碍包括 LRA 介导的低再激活潜力、一些 LRA 对自然杀伤和效应 CD8 T 细胞活性的负面影响、潜伏感染细胞凋亡的增加抵抗力以及由于慢性炎症导致的免疫系统衰竭。为此,寻找可以克服其中一些挑战的治疗策略可以改善旨在根除 HIV 的震撼和杀伤策略的结果。在这里,我们表明 LRA HODHBt 还可以改善 IL-15 介导的 NK 细胞效应器和记忆样功能。因此,药理学增强 IL-15 介导的 STAT 激活可以为 HIV 治愈开辟新的治疗途径。