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Role of Hydrogen Sulfide and 3-Mercaptopyruvate Sulfurtransferase in the Regulation of the Endoplasmic Reticulum Stress Response in Hepatocytes

机译:硫化氢和3-巯基吡氢盐磺酸盐酸酯的作用在肝细胞中内质网应激反应调节中的作用

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摘要

It is estimated that over 1.5 billion people suffer from various forms of chronic liver disease worldwide. The emerging prevalence of metabolic syndromes and alcohol misuse, along with the lack of disease-modifying agents for the therapy of many severe liver conditions predicts that chronic liver disease will continue to be a major problem in the future. Better understanding of the underlying pathogenetic mechanisms and identification of potential therapeutic targets remains a priority. Herein, we explored the potential role of the 3-mercaptopyruvate sulfurtransferase/hydrogen sulfide (H2S) system in the regulation of the endoplasmic reticulum (ER) stress and of its downstream processes in the immortalized hepatic cell line HepG2 in vitro. ER stress suppressed endogenous H2S levels and pharmacological supplementation of H2S with sodium hydrogen sulfide (NaHS) mitigated many aspects of ER stress, culminating in improved cellular bioenergetics and prevention of autophagic arrest, thereby switching cells’ fate towards survival. Genetic silencing of 3-MST or pharmacological inhibition of the key enzymes involved in hepatocyte H2S biosynthesis exacerbated many readouts related to ER-stress or its downstream functional responses. Our findings implicate the 3-MST/H2S system in the intracellular network that governs proteostasis and ER-stress adaptability in hepatocytes and reinforce the therapeutic potential of pharmacological H2S supplementation.
机译:据估计,超过15亿人患有全球各种形式的慢性肝病。新出现的代谢综合征和酒精滥用的患病率,以及缺乏疾病改性剂的许多严重肝脏病症的治疗预测,慢性肝病将来将继续成为一个主要问题。更好地理解潜在的致病机制和潜在治疗目标的鉴定仍然是优先事项。在此,我们探讨了3-巯基氟化氢化物磺酸硫化物酶/硫化氢(H2S)体系在内质网(ER)应激的调节中的潜在作用,并在不朽的肝细胞系Hepg2中的下游过程。 ER应激抑制了H2S与硫化钠(NaH)的内源性H 2 S水平和药理补充,硫化钠(NAH)增加了ER应激的许多方面,最终改善了细胞生物生物终端和预防自噬骤停,从而切换了细胞的生存。参与肝细胞H2S的关键酶的3-MST或药理抑制的遗传沉默加剧了许多与ER-ressul或其下游功能反应相关的许多读出。我们的研究结果致力于细胞内网络中的3-MST / H2S系统,治理蛋白质和肝细胞中的ER应激适应性,并加强药理学H2S补充的治疗潜力。

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