ABBV-744 alleviates LPS-induced neuroinflammation via regulation of BATF2-IRF4-STAT1/3/5 axis.

IF 6.9 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY Acta Pharmacologica Sinica Pub Date : 2024-10-01 Epub Date: 2024-06-11 DOI:10.1038/s41401-024-01318-4
Le-le Wang, Huan Wang, Si-Jin Lin, Xing-Yu Xu, Wen-Juan Hu, Jia Liu, Hai-Yan Zhang
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Abstract

Suppression of neuroinflammation using small molecule compounds targeting the key pathways in microglial inflammation has attracted great interest. Recently, increasing attention has been gained to the role of the second bromodomain (BD2) of the bromodomain and extra-terminal (BET) proteins, while its effect and molecular mechanism on microglial inflammation has not yet been explored. In this study, we evaluated the therapeutic effects of ABBV-744, a BD2 high selective BET inhibitor, on lipopolysaccharide (LPS)-induced microglial inflammation in vitro and in vivo, and explored the key pathways by which ABBV-744 regulated microglia-mediated neuroinflammation. We found that pretreatment of ABBV-744 concentration-dependently inhibited the expression of LPS-induced inflammatory mediators/enzymes including NO, TNF-α, IL-1β, IL-6, iNOS, and COX-2 in BV-2 microglial cells. These effects were validated in LPS-treated primary microglial cells. Furthermore, we observed that administration of ABBV-744 significantly alleviated LPS-induced activation of microglia and transcriptional levels of pro-inflammatory factors TNF-α and IL-1β in mouse hippocampus and cortex. RNA-Sequencing (RNA-seq) analysis revealed that ABBV-744 induced 508 differentially expressed genes (DEGs) in LPS-stimulated BV-2 cells, and gene enrichment and gene expression network analysis verified its regulation on activated microglial genes and inflammatory pathways. We demonstrated that pretreatment of ABBV-744 significantly reduced the expression levels of basic leucine zipper ATF-like transcription factor 2 (BATF2) and interferon regulatory factor 4 (IRF4), and suppressed JAK-STAT signaling pathway in LPS-stimulated BV-2 cells and mice, suggesting that the anti-neuroinflammatory effect of ABBV-744 might be associated with regulation of BATF2-IRF4-STAT1/3/5 pathway, which was confirmed by gene knockdown experiments. This study demonstrates the effect of a BD2 high selective BET inhibitor, ABBV-744, against microglial inflammation, and reveals a BATF2-IRF4-STAT1/3/5 pathway in regulation of microglial inflammation, which might provide new clues for discovery of effective therapeutic strategy against neuroinflammation.

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ABBV-744通过调节BATF2-IRF4-STAT1/3/5轴减轻LPS诱导的神经炎症。
利用靶向小胶质细胞炎症关键通路的小分子化合物抑制神经炎症已引起人们的极大兴趣。最近,人们越来越关注溴域和末端外(BET)蛋白中的第二个溴域(BD2)的作用,但其对小胶质细胞炎症的影响和分子机制尚未得到探讨。在这项研究中,我们评估了 BD2 高选择性 BET 抑制剂 ABBV-744 对脂多糖(LPS)诱导的体外和体内小胶质细胞炎症的治疗效果,并探讨了 ABBV-744 调节小胶质细胞介导的神经炎症的关键途径。我们发现,ABBV-744浓度依赖性地抑制了LPS诱导的炎症介质/酶的表达,包括BV-2小胶质细胞中的NO、TNF-α、IL-1β、IL-6、iNOS和COX-2。这些效应在经 LPS 处理的原代小胶质细胞中得到了验证。此外,我们还观察到 ABBV-744 能显著缓解 LPS 诱导的小胶质细胞活化以及小鼠海马和皮层中促炎因子 TNF-α 和 IL-1β 的转录水平。RNA-测序(RNA-seq)分析表明,ABBV-744在LPS刺激的BV-2细胞中诱导了508个差异表达基因(DEGs),基因富集和基因表达网络分析验证了其对活化的小胶质细胞基因和炎症通路的调控作用。我们证实,ABBV-744预处理可显著降低碱性亮氨酸拉链ATF样转录因子2(BATF2)和干扰素调节因子4(IRF4)的表达水平,并抑制LPS刺激的BV-2细胞和小鼠的JAK-STAT信号通路,这表明ABBV-744的抗神经炎作用可能与调节BATF2-IRF4-STAT1/3/5通路有关,基因敲除实验也证实了这一点。本研究证明了BD2高选择性BET抑制剂ABBV-744对小胶质细胞炎症的作用,并揭示了BATF2-IRF4-STAT1/3/5通路在小胶质细胞炎症调控中的作用,这可能为发现有效的神经炎症治疗策略提供了新的线索。
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来源期刊
Acta Pharmacologica Sinica
Acta Pharmacologica Sinica 医学-化学综合
CiteScore
15.10
自引率
2.40%
发文量
4365
审稿时长
2 months
期刊介绍: APS (Acta Pharmacologica Sinica) welcomes submissions from diverse areas of pharmacology and the life sciences. While we encourage contributions across a broad spectrum, topics of particular interest include, but are not limited to: anticancer pharmacology, cardiovascular and pulmonary pharmacology, clinical pharmacology, drug discovery, gastrointestinal and hepatic pharmacology, genitourinary, renal, and endocrine pharmacology, immunopharmacology and inflammation, molecular and cellular pharmacology, neuropharmacology, pharmaceutics, and pharmacokinetics. Join us in sharing your research and insights in pharmacology and the life sciences.
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