Targeting the ALKBH5-NLRP3 positive feedback loop alleviates cardiomyocyte pyroptosis after myocardial infarction.

IF 4.2 3区 医学 Q1 PHARMACOLOGY & PHARMACY European journal of pharmacology Pub Date : 2025-02-15 Epub Date: 2024-12-31 DOI:10.1016/j.ejphar.2024.177247
Liu-Gen Cui, Miao-Miao Zhai, Jian-Jian Yin, Zhi-Mo Wang, Shu-Hui Wang, Yue-Jiao Zhou, Pei-Pei Li, Yang Wang, Li Xia, Pei Wang, Xue-Xiang Cha, Li-Rong Zhang, Sheng-Na Han
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Abstract

Several studies have associated the epitranscriptomic RNA modification of N6-methyladenosine (m6A) with cardiovascular diseases; however, how m6A modification affects cardiomyocyte pyroptosis after myocardial infarction (MI) remains unknown. Here, we showed that AlkB homolog 5 (ALKBH5), an m6A demethylase, is crucial in cardiomyocyte pyroptosis after MI. We used MI rat and mouse models, a cell hypoxia model of rat primary cardiomyocytes (RCMs), and rat embryonic ventricle cell line (H9c2) to explore the functional role of m6A modification and ALKBH5 in the heart and cardiomyocytes. Using plasmids and small interfering RNAs, the expressions of ALKBH5 and NOD-like receptor family pyrin domain-containing 3 (NLRP3) were determined to study their functions in regulating cardiomyocyte m6A and pyroptosis, respectively. We characterized the role of ALKBH5, which exhibited elevated expression in the ischemic heart tissue of rats and mice and hypoxic cardiomyocytes (RCMs and H9c2 cells). ALKBH5 knockdown alleviated hypoxia-induced H9c2 cell pyroptosis by inhibiting NLRP3 inflammasome activation, whereas ALKBH5 overexpression had the opposite effect. NLRP3 knockdown alleviated hypoxia-induced H9c2 cardiomyocyte pyroptosis by inhibiting ALKBH5 expression, whereas NLRP3 overexpression had the opposite effect. Mechanistically, ALKBH5 mediated m6A modification of NLRP3 mRNA in an IGF2BP2-dependent manner, and NLRP3, as a nuclear transcription factor, regulated the ALKBH5 transcription process. Targeting the ALKBH5-NLRP3 loop with the small-molecule inhibitors alleviated cardiomyocyte pyroptosis. Our results highlight that ALKBH5-NLRP3 forms a positive feedback loop that promotes cardiomyocyte pyroptosis after MI. Therefore, inhibiting the ALKBH5-NLRP3 loop is a potential strategy for treating cardiovascular diseases.

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靶向ALKBH5-NLRP3正反馈回路可减轻心肌梗死后心肌细胞焦亡。
一些研究将n6 -甲基腺苷(m6A)的外转录组RNA修饰与心血管疾病联系起来;然而,m6A修饰如何影响心肌梗死(MI)后心肌细胞焦亡尚不清楚。在这里,我们发现AlkB同源物5 (ALKBH5),一种m6A去甲基化酶,在心肌梗死后心肌细胞焦亡中起着至关重要的作用。我们使用心肌梗死大鼠和小鼠模型、大鼠原代心肌细胞(RCMs)细胞缺氧模型和大鼠胚胎心室细胞系(H9c2)来探索m6A修饰和ALKBH5在心脏和心肌细胞中的功能作用。采用质粒和小干扰rna分别检测ALKBH5和nod样受体家族pyrin domain-containing 3 (NLRP3)的表达,研究其在心肌细胞m6A和焦亡调节中的功能。我们鉴定了ALKBH5的作用,它在大鼠和小鼠的缺血心脏组织和缺氧心肌细胞(RCMs和H9c2细胞)中表达升高。ALKBH5敲低可通过抑制NLRP3炎性体激活来减轻缺氧诱导的H9c2细胞焦亡,而ALKBH5过表达则相反。NLRP3敲低可通过抑制ALKBH5表达减轻缺氧诱导的H9c2心肌细胞焦亡,而NLRP3过表达则相反。机制上,ALKBH5以igf2bp2依赖的方式介导NLRP3 mRNA的m6A修饰,NLRP3作为核转录因子调控ALKBH5的转录过程。用小分子抑制剂靶向ALKBH5-NLRP3环可减轻心肌细胞焦亡。我们的研究结果强调,ALKBH5-NLRP3形成一个正反馈回路,促进心肌梗死后心肌细胞焦亡。因此,抑制ALKBH5-NLRP3回路是治疗心血管疾病的潜在策略。
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radio immunoprecipitation assay (RIPA) lysis buffer
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来源期刊
CiteScore
9.00
自引率
0.00%
发文量
572
审稿时长
34 days
期刊介绍: The European Journal of Pharmacology publishes research papers covering all aspects of experimental pharmacology with focus on the mechanism of action of structurally identified compounds affecting biological systems. The scope includes: Behavioural pharmacology Neuropharmacology and analgesia Cardiovascular pharmacology Pulmonary, gastrointestinal and urogenital pharmacology Endocrine pharmacology Immunopharmacology and inflammation Molecular and cellular pharmacology Regenerative pharmacology Biologicals and biotherapeutics Translational pharmacology Nutriceutical pharmacology.
期刊最新文献
Targeting Ubiquitin-Proteasome system (UPS) in treating osteoarthritis. Basigin in cerebrovascular diseases: Roles, mechanisms, and therapeutic target potential. FADS1 inhibition protects retinal pigment epithelium cells from ferroptosis in age related macular degeneration. The combination of RL-QN15 and OH-CATH30 promotes the repair of acne via the TLR2/NF-κB pathway. Targeting the ALKBH5-NLRP3 positive feedback loop alleviates cardiomyocyte pyroptosis after myocardial infarction.
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