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细胞器 pH 值的决定因素、维持和功能。

Determinants, maintenance, and function of organellar pH.

机构信息

Cell Biology Program, The Hospital for Sick Children, Washington, District of Columbia.

Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada.

出版信息

Physiol Rev. 2023 Jan 1;103(1):515-606. doi: 10.1152/physrev.00009.2022. Epub 2022 Aug 18.

Abstract

The protonation state of soluble and membrane-associated macromolecules dictates their charge, conformation, and functional activity. In addition, protons (H or their equivalents) partake in numerous metabolic reactions and serve as a source of electrochemical energy to drive the transmembrane transport of both organic and inorganic substrates. Stringent regulation of the intracellular pH is therefore paramount to homeostasis. Although the regulation of the cytosolic pH has been studied extensively, our understanding of the determinants of the H concentration ([H]) of intracellular organelles has developed more slowly, limited by their small size and inaccessibility. Recently, however, targeting of molecular probes to the organellar lumen together with advances in genomic, proteomic, and electrophysiological techniques have led to the identification and characterization of unique pumps, channels, and transporters responsible for the establishment and maintenance of intraorganellar pH. These developments and their implications for cellular function in health and disease are the subject of this review.

摘要

可溶性和膜相关大分子的质子化状态决定了它们的电荷、构象和功能活性。此外,质子(H 或其等价物)参与许多代谢反应,并作为电化学能量的来源,驱动有机和无机底物的跨膜运输。因此,严格调节细胞内 pH 值对于维持内环境稳定至关重要。尽管细胞溶质 pH 的调节已得到广泛研究,但由于细胞器体积小且难以接近,我们对细胞器内 H 浓度 ([H]) 决定因素的理解发展较为缓慢。然而,最近将分子探针靶向细胞器腔与基因组学、蛋白质组学和电生理学技术的进步相结合,已经鉴定和描述了负责建立和维持细胞器内 pH 值的独特泵、通道和转运体。本综述讨论了这些进展及其对健康和疾病状态下细胞功能的影响。

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