GPCRs identified on mitochondrial membranes: New therapeutic targets for diseases.

Journal of pharmaceutical analysis Pub Date : 2025-07-01 Epub Date: 2025-01-02 DOI:10.1016/j.jpha.2024.101178
Yanxin Pan, Ning Ji, Lu Jiang, Yu Zhou, Xiaodong Feng, Jing Li, Xin Zeng, Jiongke Wang, Ying-Qiang Shen, Qianming Chen
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Abstract

G protein-coupled receptors (GPCRs) are the largest family of membrane proteins in eukaryotes, with nearly 800 genes coding for these proteins. They are involved in many physiological processes, such as light perception, taste and smell, neurotransmitter, metabolism, endocrine and exocrine, cell growth and migration. Importantly, GPCRs and their ligands are the targets of approximately one third of all marketed drugs. GPCRs are traditionally known for their role in transmitting signals from the extracellular environment to the cell's interior via the plasma membrane. However, emerging evidence suggests that GPCRs are also localized on mitochondria, where they play critical roles in modulating mitochondrial functions. These mitochondrial GPCRs (mGPCRs) can influence processes such as mitochondrial respiration, apoptosis, and reactive oxygen species (ROS) production. By interacting with mitochondrial signaling pathways, mGPCRs contribute to the regulation of energy metabolism and cell survival. Their presence on mitochondria adds a new layer of complexity to the understanding of cellular signaling, highlighting the organelle's role as not just an energy powerhouse but also a crucial hub for signal transduction. This expanding understanding of mGPCR function on mitochondria opens new avenues for research, particularly in the context of diseases where mitochondrial dysfunction plays a key role. Abnormalities in the phase conductance pathway of GPCRs located on mitochondria are closely associated with the development of systemic diseases such as cardiovascular disease, diabetes, obesity and Alzheimer's disease. In this review, we examined the various types of GPCRs identified on mitochondrial membranes and analyzed the complex relationships between mGPCRs and the pathogenesis of various diseases. We aim to provide a clearer understanding of the emerging significance of mGPCRs in health and disease, and to underscore their potential as therapeutic targets in the treatment of these conditions.

在线粒体膜上发现的gpcr:疾病的新治疗靶点。
G蛋白偶联受体(gpcr)是真核生物中最大的膜蛋白家族,有近800个基因编码这些蛋白。它们参与许多生理过程,如光感知、味觉和嗅觉、神经递质、代谢、内分泌和外分泌、细胞生长和迁移。重要的是,gpcr及其配体是大约三分之一上市药物的靶标。传统上,gpcr以其通过质膜将信号从细胞外环境传递到细胞内部的作用而闻名。然而,新出现的证据表明,gpcr也定位于线粒体,在线粒体功能调节中发挥关键作用。这些线粒体gpcr可以影响线粒体呼吸、细胞凋亡和活性氧(ROS)产生等过程。通过与线粒体信号通路相互作用,mGPCRs有助于调节能量代谢和细胞存活。它们在线粒体上的存在为细胞信号传导的理解增加了一层新的复杂性,突出了细胞器不仅是一个能量发电站,而且是信号转导的关键枢纽。对线粒体mGPCR功能的进一步了解为研究开辟了新的途径,特别是在线粒体功能障碍起关键作用的疾病的背景下。位于线粒体上的gpcr相导通路异常与心血管疾病、糖尿病、肥胖、阿尔茨海默病等全身性疾病的发生密切相关。在这篇综述中,我们研究了线粒体膜上鉴定的各种类型的gpcr,并分析了mgpcr与各种疾病发病机制之间的复杂关系。我们的目标是对mGPCRs在健康和疾病中的新兴意义提供更清晰的理解,并强调它们作为治疗这些疾病的治疗靶点的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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