Department of Clinical Laboratory Sciences and Medical Biotechnology, College of Medicine, National Taiwan University, Taipei, Taiwan; Department of Laboratory Medicine, National Taiwan University Hospital, Taipei, Taiwan.
J. David Gladstone Institutes, San Francisco, CA, USA.
Biomed Pharmacother. 2022 Apr;148:112751. doi: 10.1016/j.biopha.2022.112751. Epub 2022 Feb 28.
Infectious diseases and cancer are among the key medical challenges that humankind is facing today. A growing amount of evidence suggests that ion channels in the endolysosomal system play a crucial role in the pathology of both groups of diseases. The development of advanced patch-clamp technologies has allowed us to directly characterize ion fluxes through endolysosomal ion channels in their native environments. Endolysosomes are essential organelles for intracellular transport, digestion and metabolism, and maintenance of homeostasis. The endolysosomal ion channels regulate the function of the endolysosomal system through four basic mechanisms: calcium release, control of membrane potential, pH change, and osmolarity regulation. In this review, we put particular emphasis on the endolysosomal cation channels, including TPC2 and TRPML2, which are particularly important in monocyte function. We discuss existing endogenous and synthetic ligands of these channels and summarize current knowledge of their impact on channel activity and function in different cell types. Moreover, we summarize recent findings on the importance of TPC2 and TRPML2 channels as potential drug targets for the prevention and treatment of the emerging infectious diseases and cancer.
传染病和癌症是人类目前面临的主要医学挑战之一。越来越多的证据表明,内溶酶体系统中的离子通道在这两类疾病的病理过程中起着关键作用。先进的膜片钳技术的发展使我们能够在其天然环境中直接描述内溶酶体离子通道的离子流。内溶酶体是细胞内运输、消化和代谢以及维持内稳态的必需细胞器。内溶酶体离子通道通过四种基本机制调节内溶酶体系统的功能:钙释放、膜电位控制、pH 值变化和渗透压调节。在这篇综述中,我们特别强调了内溶酶体阳离子通道,包括 TPC2 和 TRPML2,它们在单核细胞功能中尤为重要。我们讨论了这些通道的现有内源性和合成配体,并总结了它们对不同细胞类型中通道活性和功能的影响的现有知识。此外,我们总结了 TPC2 和 TRPML2 通道作为预防和治疗新发传染病和癌症的潜在药物靶点的重要性的最新发现。