Hospital Universitari Joan XXIII de Tarragona, Institut d'Investigació Sanitària Pere Virgili (IISPV)-CERCA, Tarragona, Spain.
CIBER de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM)-Instituto de Salud Carlos III (ISCIII), Madrid, Spain.
Diabetologia. 2024 Mar;67(3):430-442. doi: 10.1007/s00125-023-06063-7. Epub 2024 Jan 5.
Beyond their conventional roles in intracellular energy production, some traditional metabolites also function as extracellular messengers that activate cell-surface G-protein-coupled receptors (GPCRs) akin to hormones and neurotransmitters. These signalling metabolites, often derived from nutrients, the gut microbiota or the host's intermediary metabolism, are now acknowledged as key regulators of various metabolic and immune responses. This review delves into the multi-dimensional aspects of succinate, a dual metabolite with roots in both the mitochondria and microbiome. It also connects the dots between succinate's role in the Krebs cycle, mitochondrial respiration, and its double-edge function as a signalling transmitter within and outside the cell. We aim to provide an overview of the role of the succinate-succinate receptor 1 (SUCNR1) axis in diabetes, discussing the potential use of succinate as a biomarker and the novel prospect of targeting SUCNR1 to manage complications associated with diabetes. We further propose strategies to manipulate the succinate-SUCNR1 axis for better diabetes management; this includes pharmacological modulation of SUCNR1 and innovative approaches to manage succinate concentrations, such as succinate administration and indirect strategies, like microbiota modulation. The dual nature of succinate, both in terms of origins and roles, offers a rich landscape for understanding the intricate connections within metabolic diseases, like diabetes, and indicates promising pathways for developing new therapeutic strategies.
除了在细胞内能量产生中的传统作用外,一些传统代谢物还作为细胞外信使发挥作用,激活细胞表面 G 蛋白偶联受体 (GPCR),类似于激素和神经递质。这些信号代谢物通常来自营养物质、肠道微生物群或宿主的中间代谢物,现在被认为是各种代谢和免疫反应的关键调节剂。
本篇综述深入探讨了琥珀酸这一双重代谢物的多维特性,其根源既有线粒体,也有微生物群。它还将琥珀酸在三羧酸循环、线粒体呼吸中的作用与其在细胞内外作为信号转导递质的双重功能联系起来。
我们旨在概述琥珀酸-琥珀酸受体 1 (SUCNR1) 轴在糖尿病中的作用,讨论琥珀酸作为生物标志物的潜在用途,以及靶向 SUCNR1 以管理与糖尿病相关并发症的新前景。我们进一步提出了操纵琥珀酸-SUCNR1 轴以更好地管理糖尿病的策略;这包括 SUCNR1 的药理学调节以及管理琥珀酸浓度的创新方法,如琥珀酸给药和间接策略,如微生物群调节。
琥珀酸的双重性质,无论是在起源还是作用方面,都为理解代谢疾病(如糖尿病)内部的复杂联系提供了丰富的领域,并为开发新的治疗策略指明了有希望的途径。