离子通道
运输机
计算生物学
神经科学
计算机科学
化学
生物
生物化学
基因
受体
作者
Artem Kondratskyi,Andre Bazzone,Markus Rapedius,Rocco Zerlotti,Bastien Masson,Nidish Ponath Sadanandan,Joanne L. Parker,Alexandre Santinho,Marine Moutia,Abdou Rachid Thiam,Andrew H. Kemp,Fitzwilliam Seibertz,Nicoletta Murciano,Søren Friis,Nadine Becker,Theodore J. Price,Maria Barthmes,Cecilia George,Michael George,David Dalrymple
出处
期刊:Bioelectricity
[Mary Ann Liebert]
日期:2025-03-01
卷期号:7 (1): 29-57
被引量:1
标识
DOI:10.1089/bioe.2025.0010
摘要
In recent years, there has been a growing interest in lysosomal ion channels and transporters due to their critical role in maintaining lysosomal function and their involvement in a variety of diseases, particularly lysosomal storage diseases, cancer, and neurodegenerative disorders. Recent advancements in research techniques, including manual and automated patch clamp (APC) electrophysiology, solid-supported membrane-based electrophysiology (SSME), and fluorescence-based ion imaging, have further enhanced our ability to investigate lysosomal ion channels and transporters in both physiological and pathological conditions, spurring drug discovery efforts. Several pharmaceutical companies are now developing therapies aimed at modulating these channels and transporters to improve lysosomal function in disease. Small molecules targeting channels like transient receptor potential mucolipin (TRPML) 1 and TMEM175, as well as drugs modulating lysosomal pH, are currently in preclinical and clinical development. This review provides an overview of the role of lysosomal ion channels and transporters in health and disease, highlights the cutting-edge techniques used to study them, and discusses the therapeutic potential of targeting these channels and transporters in the treatment of various diseases. Furthermore, in addition to summarizing recent discoveries, we contribute novel functional data on cystinosin, TRPML1, and two-pore channel 2 (TPC2), utilizing both SSME and APC approaches.
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