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细胞内氯离子通道:疾病中的新型生物标志物

Intracellular Chloride Channels: Novel Biomarkers in Diseases.

作者信息

Gururaja Rao Shubha, Patel Neel J, Singh Harpreet

机构信息

Department of Physiology and Cell Biology, The Ohio State University Wexner Medical Center, Columbus, OH, United States.

Department of Cardiology, Hospital of the University of Pennsylvania, Philadelphia, PA, United States.

出版信息

Front Physiol. 2020 Feb 14;11:96. doi: 10.3389/fphys.2020.00096. eCollection 2020.

Abstract

Ion channels are integral membrane proteins present on the plasma membrane as well as intracellular membranes. In the human genome, there are more than 400 known genes encoding ion channel proteins. Ion channels are known to regulate several cellular, organellar, and physiological processes. Any mutation or disruption in their function can result in pathological disorders, both common or rare. Ion channels present on the plasma membrane are widely acknowledged for their role in various biological processes, but in recent years, several studies have pointed out the importance of ion channels located in intracellular organelles. However, ion channels located in intracellular organelles are not well-understood in the context of physiological conditions, such as the generation of cellular excitability and ionic homeostasis. Due to the lack of information regarding their molecular identity and technical limitations of studying them, intracellular organelle ion channels have thus far been overlooked as potential therapeutic targets. In this review, we focus on a novel class of intracellular organelle ion channels, Chloride Intracellular Ion Channels (CLICs), mainly documented for their role in cardiovascular, neurophysiology, and tumor biology. CLICs have a single transmembrane domain, and in cells, they exist in cytosolic as well as membranous forms. They are predominantly present in intracellular organelles and have recently been shown to be localized to cardiomyocyte mitochondria as well as exosomes. In fact, a member of this family, CLIC5, is the first mitochondrial chloride channel to be identified on the molecular level in the inner mitochondrial membrane, while another member, CLIC4, is located predominantly in the outer mitochondrial membrane. In this review, we discuss this unique class of intracellular chloride channels, their role in pathologies, such as cardiovascular, cancer, and neurodegenerative diseases, and the recent developments concerning their usage as theraputic targets.

摘要

离子通道是存在于质膜以及细胞内膜上的整合膜蛋白。在人类基因组中,有400多个已知基因编码离子通道蛋白。已知离子通道可调节多种细胞、细胞器和生理过程。其功能的任何突变或破坏都可能导致常见或罕见的病理紊乱。质膜上的离子通道因其在各种生物过程中的作用而被广泛认可,但近年来,多项研究指出了位于细胞内细胞器中的离子通道的重要性。然而,在细胞兴奋性的产生和离子稳态等生理条件下,位于细胞内细胞器中的离子通道尚未得到充分了解。由于缺乏关于其分子身份的信息以及研究它们的技术限制,细胞内细胞器离子通道迄今为止一直被忽视作为潜在的治疗靶点。在本综述中,我们重点关注一类新型的细胞内细胞器离子通道,即细胞内氯离子通道(CLICs),主要记录了它们在心血管、神经生理学和肿瘤生物学中的作用。CLICs有一个单一的跨膜结构域,在细胞中,它们以胞质和膜状形式存在。它们主要存在于细胞内细胞器中,最近已显示定位于心肌细胞线粒体以及外泌体中。事实上,这个家族的一个成员CLIC5是在内质网膜上分子水平鉴定出的第一个线粒体氯离子通道,而另一个成员CLIC4主要位于线粒体外膜。在本综述中,我们讨论了这类独特的细胞内氯离子通道、它们在心血管、癌症和神经退行性疾病等病理学中的作用,以及它们作为治疗靶点的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08ab/7034325/e529a8822997/fphys-11-00096-g001.jpg

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