National Centre for Neuroimmunology and Emerging Diseases, Menzies Health Institute, Griffith University, Gold Coast 4215, Australia.
Consortium Health International for Myalgic Encephalomyelitis, Menzies Health Institute Queensland, Griffith University, Gold Coast 4215, Australia.
Int J Environ Res Public Health. 2021 Oct 12;18(20):10708. doi: 10.3390/ijerph182010708.
The transient receptor potential (TRP) superfamily of ion channels is involved in the molecular mechanisms that mediate neuroimmune interactions and activities. Recent advancements in neuroimmunology have identified a role for TRP cation channels in several neuroimmune disorders including amyotropic lateral sclerosis, multiple sclerosis, and myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS). ME/CFS is a debilitating disorder with an obscure aetiology, hence considerable examination of its pathobiology is warranted. Dysregulation of TRP melastatin (TRPM) subfamily members and calcium signalling processes are implicated in the neurological, immunological, cardiovascular, and metabolic impairments inherent in ME/CFS. In this review, we present TRPM7 as a potential candidate in the pathomechanism of ME/CFS, as TRPM7 is increasingly recognized as a key mediator of physiological and pathophysiological mechanisms affecting neurological, immunological, cardiovascular, and metabolic processes. A focused examination of the biochemistry of TRPM7, the role of this protein in the aforementioned systems, and the potential of TRPM7 as a molecular mechanism in the pathophysiology of ME/CFS will be discussed in this review. TRPM7 is a compelling candidate to examine in the pathobiology of ME/CFS as TRPM7 fulfils several key roles in multiple organ systems, and there is a paucity of literature reporting on its role in ME/CFS.
瞬时受体电位 (TRP) 离子通道超家族参与介导神经免疫相互作用和活动的分子机制。神经免疫学的最新进展确定了 TRP 阳离子通道在几种神经免疫疾病中的作用,包括肌萎缩性侧索硬化症、多发性硬化症和慢性疲劳综合征/慢性疲劳综合征 (ME/CFS)。ME/CFS 是一种衰弱性疾病,病因不明,因此需要对其病理生物学进行大量检查。TRP 黑素皮质素 (TRPM) 亚家族成员和钙信号转导过程的失调与 ME/CFS 中固有的神经、免疫、心血管和代谢损伤有关。在这篇综述中,我们提出 TRPM7 作为 ME/CFS 发病机制的潜在候选物,因为 TRPM7 越来越被认为是影响神经、免疫、心血管和代谢过程的生理和病理生理机制的关键介质。本文将重点探讨 TRPM7 的生物化学特性、该蛋白在上述系统中的作用以及 TRPM7 作为 ME/CFS 病理生理学分子机制的潜力。TRPM7 是 ME/CFS 病理生物学中一个引人注目的候选物,因为 TRPM7 在多个器官系统中发挥着重要作用,而关于其在 ME/CFS 中的作用的文献却很少。