Sandoval Alejandro, Duran Paz, Corzo-López Alejandra, Fernández-Gallardo Miriam, Muñoz-Herrera David, Leyva-Leyva Margarita, González-Ramírez Ricardo, Felix Ricardo
School of Medicine FES Iztacala, National Autonomous University of Mexico (UNAM), Tlalnepantla, Mexico.
Department of Cell Biology, Centre for Research and Advanced Studies (Cinvestav), Mexico City, Mexico.
Int J Neurosci. 2024 May;134(5):452-461. doi: 10.1080/00207454.2022.2115905. Epub 2022 Nov 7.
Voltage-gated calcium (Ca) channels play an essential role in maintaining calcium homeostasis and regulating numerous physiological processes in neurons. Therefore, dysregulation of calcium signaling is relevant in many neurological disorders, including Parkinson's disease (PD). This review aims to introduce the role of Ca channels in PD and discuss some novel aspects of channel regulation and its impact on the molecular pathophysiology of the disease. an exhaustive search of the literature in the field was carried out using the PubMed database of The National Center for Biotechnology Information. Systematic searches were performed from the initial date of publication to May 2022. Although α-synuclein aggregates are the main feature of PD, L-type calcium (Ca1) channels seem to play an essential role in the pathogenesis of PD. Changes in the functional expression of Ca1.3 channels alter Calcium homeostasis and contribute to the degeneration of dopaminergic neurons. Furthermore, recent studies suggest that Ca channel trafficking towards the cell membrane depends on the activity of the ubiquitin-proteasome system (UPS). In PD, there is an increase in the expression of L-type channels associated with a decrease in the expression of Parkin, an E3 enzyme of the UPS. Therefore, a link between Parkin and Ca channels could play a fundamental role in the pathogenesis of PD and, as such, could be a potentially attractive target for therapeutic intervention. The study of alterations in the functional expression of Ca channels will provide a framework to understand better the neurodegenerative processes that occur in PD and a possible path toward identifying new therapeutic targets to treat this condition.
电压门控钙(Ca)通道在维持钙稳态和调节神经元中的众多生理过程中起着至关重要的作用。因此,钙信号失调与包括帕金森病(PD)在内的许多神经系统疾病相关。本综述旨在介绍钙通道在PD中的作用,并讨论通道调节的一些新方面及其对该疾病分子病理生理学的影响。使用美国国立生物技术信息中心的PubMed数据库对该领域的文献进行了详尽检索。从最初发表日期到2022年5月进行了系统检索。虽然α-突触核蛋白聚集是PD的主要特征,但L型钙(Ca1)通道似乎在PD的发病机制中起着至关重要的作用。Ca1.3通道功能表达的变化会改变钙稳态,并导致多巴胺能神经元的退化。此外,最近的研究表明,钙通道向细胞膜的转运取决于泛素-蛋白酶体系统(UPS)的活性。在PD中,L型通道的表达增加,同时UPS的E3酶帕金蛋白的表达减少。因此,帕金蛋白与钙通道之间的联系可能在PD的发病机制中起关键作用,因此可能是一个有吸引力的治疗干预靶点。对钙通道功能表达改变的研究将为更好地理解PD中发生的神经退行性过程提供一个框架,并为确定治疗这种疾病的新治疗靶点提供一条可能的途径。