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水通道蛋白的非转运功能。

Non-Transport Functions of Aquaporins.

作者信息

Li Xiaowei, Yang Baoxue

机构信息

State Key Laboratory of Natural and Biomimetic Drugs, Department of Pharmacology, School of Basic Medical Sciences, Peking University, Beijing, China.

School of Basic Medical Sciences, Peking University, Beijing, China.

出版信息

Adv Exp Med Biol. 2023;1398:65-80. doi: 10.1007/978-981-19-7415-1_5.

Abstract

Although it has been more than 20 years since the first aquaporin was discovered, the specific functions of many aquaporins are still under investigation, because various mice lacking aquaporins have no significant phenotypes. And in many studies, the function of aquaporin is not directly related to its transport function. Therefore, this chapter will focus on some unexpected functions of aquaporins, such the decreased tumor angiogenesis in AQP1 knockout mice, and AQP1 promotes cell migration, possibly by accelerating the water transport in lamellipodia of migrating cells. AQP transports glycerol, and water regulates glycerol content in epidermis and fat, thereby regulating skin hydration/biosynthesis and fat metabolism. AQPs may also be involved in neural signal transduction, cell volume regulation, and organelle physiology. AQP1, AQP3, and AQP5 are also involved in cell proliferation. In addition, AQPs have also been reported to play roles in inflammation in various tissues and organs. The functions of these AQPs may not depend on the permeability of small molecules such as water and glycerol, suggesting AQPs may play more roles in different biological processes in the body.

摘要

尽管自首个水通道蛋白被发现至今已有20多年,但许多水通道蛋白的具体功能仍在研究之中,因为各种缺乏水通道蛋白的小鼠并没有明显的表型。而且在许多研究中,水通道蛋白的功能与其转运功能并无直接关联。因此,本章将聚焦于水通道蛋白的一些意想不到的功能,比如水通道蛋白1基因敲除小鼠中肿瘤血管生成减少,以及水通道蛋白1可能通过加速迁移细胞板状伪足中的水转运来促进细胞迁移。水通道蛋白可转运甘油,水则调节表皮和脂肪中的甘油含量,从而调节皮肤水合作用/生物合成以及脂肪代谢。水通道蛋白也可能参与神经信号转导、细胞体积调节和细胞器生理功能。水通道蛋白1、水通道蛋白3和水通道蛋白5也参与细胞增殖。此外,据报道水通道蛋白在各种组织和器官的炎症中也发挥作用。这些水通道蛋白的功能可能并不依赖于水和甘油等小分子的通透性,这表明水通道蛋白可能在身体不同的生物学过程中发挥更多作用。

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