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神经系统溶质载体 4 家族中的 Na+-偶联碳酸氢盐转运体:功能、定位及与神经功能的相关性。

Na-coupled bicarbonate transporters of the solute carrier 4 family in the nervous system: function, localization, and relevance to neurologic function.

机构信息

Department of Physiology and Biophysics, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

Neuroscience. 2010 Dec 29;171(4):951-72. doi: 10.1016/j.neuroscience.2010.09.037. Epub 2010 Sep 25.

Abstract

Many cellular processes including neuronal activity are sensitive to changes in intracellular and/or extracellular pH-both of which are regulated by acid-base transporter activity. HCO(3)(-)-dependent transporters are particularly potent regulators of intracellular pH in neurons and astrocytes, and also contribute to the composition of the cerebrospinal fluid (CSF). The molecular physiology of HCO(3)(-) transporters has advanced considerably over the past ∼14 years as investigators have cloned and characterized the function and localization of many Na-Coupled Bicarbonate Transporters of the solute carrier 4 (Slc4) family (NCBTs). In this review, we provide an updated overview of the function and localization of NCBTs in the nervous system. Multiple NCBTs are expressed in neurons and astrocytes in various brain regions, as well as in epithelial cells of the choroid plexus. Characteristics of human patients with SLC4 gene mutations/deletions and results from recent studies on mice with Slc4 gene disruptions highlight the functional importance of NCBTs in neuronal activity, somatosensory function, and CSF production. Furthermore, energy-deficient states (e.g., hypoxia and ischemia) lead to altered expression and activity of NCBTs. Thus, recent studies expand our understanding of the role of NCBTs in regulating the pH and ionic composition of the nervous system that can modulate neuronal activity.

摘要

许多细胞过程,包括神经元活动,对细胞内和/或细胞外 pH 的变化都很敏感——这两者都由酸碱转运体的活性来调节。HCO3(-)依赖性转运体是神经元和星形胶质细胞中调节细胞内 pH 的特别有效的调节剂,也有助于脑脊液(CSF)的组成。在过去的大约 14 年中,随着研究人员克隆和表征了溶质载体 4(Slc4)家族中的许多 Na 耦合碳酸氢盐转运体(NCBTs)的功能和定位,HCO3(-)转运体的分子生理学已经有了很大的进展。在这篇综述中,我们提供了 NCBT 在神经系统中的功能和定位的最新概述。多种 NCBTs 在不同脑区的神经元和星形胶质细胞中表达,也在脉络丛的上皮细胞中表达。具有 SLC4 基因突变/缺失的人类患者的特征和最近关于 Slc4 基因缺失的小鼠的研究结果突出了 NCBTs 在神经元活动、躯体感觉功能和 CSF 产生中的功能重要性。此外,能量不足状态(如缺氧和缺血)会导致 NCBTs 的表达和活性改变。因此,最近的研究扩大了我们对 NCBTs 在调节神经系统的 pH 和离子组成中的作用的理解,这些调节可以调节神经元活动。

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