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金属硫蛋白在β细胞病理生理学中的新作用:超越金属稳态和抗氧化反应

Emerging Roles of Metallothioneins in Beta Cell Pathophysiology: Beyond and Above Metal Homeostasis and Antioxidant Response.

作者信息

Bensellam Mohammed, Laybutt D Ross, Jonas Jean-Christophe

机构信息

Pôle D'Endocrinologie, Diabète et Nutrition, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, B-1200 Brussels, Belgium.

Garvan Institute of Medical Research, Sydney, NSW 2010, Australia.

出版信息

Biology (Basel). 2021 Feb 26;10(3):176. doi: 10.3390/biology10030176.

Abstract

Metallothioneins (MTs) are low molecular weight, cysteine-rich, metal-binding proteins whose precise biological roles have not been fully characterized. Existing evidence implicated MTs in heavy metal detoxification, metal ion homeostasis and antioxidant defense. MTs were thus categorized as protective effectors that contribute to cellular homeostasis and survival. This view has, however, been challenged by emerging evidence in different medical fields revealing novel pathophysiological roles of MTs, including inflammatory bowel disease, neurodegenerative disorders, carcinogenesis and diabetes. In the present focused review, we discuss the evidence for the role of MTs in pancreatic beta-cell biology and insulin secretion. We highlight the pattern of specific isoforms of MT gene expression in rodents and human beta-cells. We then discuss the mechanisms involved in the regulation of MTs in islets under physiological and pathological conditions, particularly type 2 diabetes, and analyze the evidence revealing adaptive and negative roles of MTs in beta-cells and the potential mechanisms involved. Finally, we underscore the unsettled questions in the field and propose some future research directions.

摘要

金属硫蛋白(MTs)是一类低分子量、富含半胱氨酸的金属结合蛋白,其确切的生物学作用尚未完全明确。现有证据表明MTs参与重金属解毒、金属离子稳态维持及抗氧化防御。因此,MTs被归类为有助于细胞内稳态和生存的保护效应分子。然而,不同医学领域不断涌现的证据揭示了MTs的新病理生理作用,包括炎症性肠病、神经退行性疾病、癌症发生和糖尿病,这一观点受到了挑战。在本聚焦综述中,我们讨论了MTs在胰腺β细胞生物学和胰岛素分泌中作用的证据。我们重点介绍了啮齿动物和人类β细胞中MT基因表达的特定亚型模式。然后,我们讨论了生理和病理条件下,特别是2型糖尿病时,胰岛中MTs调控的相关机制,并分析了揭示MTs在β细胞中的适应性和负面作用及其潜在机制的证据。最后,我们强调了该领域尚未解决的问题,并提出了一些未来的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcf0/7996892/de9bbc535787/biology-10-00176-g001.jpg

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