胰腺β细胞葡萄糖感应中的线粒体代谢和动力学。

Mitochondrial metabolism and dynamics in pancreatic beta cell glucose sensing.

机构信息

Research Centre of the CHUM, Faculté de Médecine, Université de Montréal, Montréal, QC, Canada.

Section of Cell Biology and Functional Genomics, Faculty of Medicine, Imperial College London, London, U.K.

出版信息

Biochem J. 2023 Jun 15;480(11):773-789. doi: 10.1042/BCJ20230167.

Abstract

Glucose-regulated insulin secretion becomes defective in all forms of diabetes. The signaling mechanisms through which the sugar acts on the ensemble of beta cells within the islet remain a vigorous area of research after more than 60 years. Here, we focus firstly on the role that the privileged oxidative metabolism of glucose plays in glucose detection, discussing the importance of 'disallowing' in the beta cell the expression of genes including Lactate dehydrogenase (Ldha) and the lactate transporter Mct1/Slc16a1 to restrict other metabolic fates for glucose. We next explore the regulation of mitochondrial metabolism by Ca2+ and its possible role in sustaining glucose signaling towards insulin secretion. Finally, we discuss in depth the importance of mitochondrial structure and dynamics in the beta cell, and their potential for therapeutic targeting by incretin hormones or direct regulators of mitochondrial fusion. This review, and the 2023 Sir Philip Randle Lecture which GAR will give at the Islet Study Group meeting in Vancouver, Canada in June 2023, honor the foundational, and sometimes under-appreciated, contributions made by Professor Randle and his colleagues towards our understanding of the regulation of insulin secretion.

摘要

葡萄糖调节的胰岛素分泌在所有类型的糖尿病中都存在缺陷。尽管已经过去了 60 多年,但糖作用于胰岛内β细胞群体的信号机制仍然是一个活跃的研究领域。在这里,我们首先关注葡萄糖的特殊氧化代谢在葡萄糖检测中的作用,讨论在β细胞中“禁止”表达包括乳酸脱氢酶(Ldha)和乳酸转运体 Mct1/Slc16a1 在内的基因的重要性,以限制葡萄糖的其他代谢命运。接下来,我们探讨了 Ca2+对线粒体代谢的调节及其在维持葡萄糖信号向胰岛素分泌的作用。最后,我们深入讨论了β细胞中线粒体结构和动力学的重要性,以及它们可能成为肠促胰岛素激素或线粒体融合的直接调节剂的治疗靶点。这篇综述,以及 GAR 将在 2023 年 6 月于加拿大温哥华举行的胰岛研究小组会议上发表的 2023 年菲利普·兰德尔爵士讲座,旨在纪念兰德尔教授及其同事们对我们理解胰岛素分泌调节所做出的基础性、有时被低估的贡献。

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