3-巯基丙酮酸硫转移酶(MPST)在代谢综合征和血管炎症发生中的保护作用

IF 9.1 2区 医学 Q1 PHARMACOLOGY & PHARMACY Pharmacological research Pub Date : 2025-01-01 DOI:10.1016/j.phrs.2024.107542
Paraskevas Zampas , Zhen Li , Antonia Katsouda , Aimilia Varela , Stelios Psarras , Constantinos H. Davos , David J. Lefer , Andreas Papapetropoulos
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引用次数: 0

摘要

代谢综合征(MetS)是一组同时发生并增加心血管疾病风险的代谢异常。3-巯基丙酮酸硫转移酶(MPST)是一种半胱氨酸分解代谢酶,产生丙酮酸和硫化氢(H2S),在调节能量稳态中起核心作用。在此,我们试图通过小鼠疾病模型研究MPST/H2S在MetS中的作用及其心血管后果。小鼠喂食高脂肪饮食(HFD) 15周以诱导肥胖和高血糖,并在最后5周给予一氧化氮合酶抑制剂以诱导高血压和MetS。该模型引起轻度左室舒张功能障碍和血管内皮功能障碍。主动脉中游离H2S和亚砜硫水平降低,但心脏中没有变化。此外,主动脉中MPST和硫代硫酸盐硫转移酶(TST)下调。Mpst (Mpst-/-)的整体缺失导致MetS小鼠体重增加和葡萄糖耐受不良加剧,但不影响血压,并导致参与血管免疫反应的基因上调,提示t细胞浸润和激活。药理恢复H2S水平可改善MetS的合并症;GYY4137可减轻体重和血压,减轻心脏纤维化,改善葡萄糖处理和内皮依赖性松弛。综上所述,本研究发现MPST/H2S减少会加剧与MetS相关的病理变化,并导致血管炎症。补充H2S是治疗与MetS相关的异常的潜在治疗方法。
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Protective role of 3-mercaptopyruvate sulfurtransferase (MPST) in the development of metabolic syndrome and vascular inflammation
Metabolic syndrome (MetS) is a cluster of metabolic abnormalities that occur concurrently and increase the risk of cardiovascular disease. 3-mercaptopyruvate sulfurtransferase (MPST) is a cysteine-catabolizing enzyme that yields pyruvate and hydrogen sulfide (H2S) and plays a central role in the regulation of energy homeostasis. Herein, we seek to investigate the role of MPST/H2S in MetS and its cardiovascular consequences using a mouse model of the disease. Mice were fed a high-fat diet (HFD) for 15 weeks to induce obesity and hyperglycemia and administrated a nitric oxide synthase inhibitor, during the last 5 weeks to induce hypertension and MetS. This model caused a mild left ventricular (LV) diastolic dysfunction and vascular endothelial dysfunction. Free H2S and sulfane-sulfur levels were decreased in the aorta, but unaltered in the heart. Also, downregulation of MPST and thiosulfate sulfuretransferase (TST) were observed in the aorta. Global deletion of Mpst (Mpst-/-) resulted in increased body weight and greater glucose intolerance in mice with MetS, without affecting their blood pressure, and caused an upregulation of genes involved in immune responses in the vasculature suggestive of T-cell infiltration and activation. Pharmacological restoration of H2S levels ameliorated the comorbidities of MetS; GYY4137 administration reduced body weight and blood pressure, attenuated cardiac fibrosis and improved glucose handling and endothelium-dependent relaxation. In conclusion, this study found that reduced MPST/H2S exacerbates the pathological changes associated with MetS and contributes to vascular inflammation. H2S supplementation emerges as a potential therapeutic approach to treat the abnormalities associated with MetS.
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来源期刊
Pharmacological research
Pharmacological research 医学-药学
CiteScore
18.70
自引率
3.20%
发文量
491
审稿时长
8 days
期刊介绍: Pharmacological Research publishes cutting-edge articles in biomedical sciences to cover a broad range of topics that move the pharmacological field forward. Pharmacological research publishes articles on molecular, biochemical, translational, and clinical research (including clinical trials); it is proud of its rapid publication of accepted papers that comprises a dedicated, fast acceptance and publication track for high profile articles.
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