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迈向对植物水通道蛋白亚型数量众多及多种调控机制的理解。

Toward understanding of the high number of plant aquaporin isoforms and multiple regulation mechanisms.

作者信息

Fox Ana Romina, Maistriaux Laurie C, Chaumont François

机构信息

Institut des Sciences de la Vie, Université catholique de Louvain, Croix du Sud 4-L7.07.14, B-1348 Louvain-la-Neuve, Belgium.

Institut des Sciences de la Vie, Université catholique de Louvain, Croix du Sud 4-L7.07.14, B-1348 Louvain-la-Neuve, Belgium.

出版信息

Plant Sci. 2017 Nov;264:179-187. doi: 10.1016/j.plantsci.2017.07.021. Epub 2017 Aug 16.

Abstract

Since the discovery of the first plant aquaporin (AQP) in 1993, our conception of the way plants control cell water homeostasis as well as their global water balance has been revisited. Plant AQPs constitute a large family of evolutionarily related channels that, in addition to water, can also facilitate the membrane diffusion of a number of small solutes, such as urea, CO, HO, ammonia, metalloids, and even ions, indicating a wide range of cellular functions. At the cellular level, AQPs are subject to various regulation mechanisms leading to active/inactive channels in their target membranes. In this review, we discuss several specific questions that need to be addressed in future research. Why are so many different AQPs simultaneously expressed in specific cellular types? How is their selectivity to different solutes controlled (in particular in the case of multiple permeation properties)? What does the molecular interaction between AQPs and other molecules tell us about their regulation and their involvement in specific cellular and physiological processes? Resolving these questions will definitely help us better understand the physiological advantages that plants have to express and regulate so many AQP isoforms.

摘要

自1993年发现首个植物水通道蛋白(AQP)以来,我们对植物控制细胞水平衡及其整体水平衡方式的认识已被重新审视。植物水通道蛋白构成了一个进化相关的通道大家族,除了水之外,还能促进多种小分子溶质的膜扩散,如尿素、一氧化碳、过氧化氢、氨、类金属,甚至离子,这表明其具有广泛的细胞功能。在细胞水平上,水通道蛋白受到各种调节机制的影响,导致其在靶膜中处于活性/非活性通道状态。在这篇综述中,我们讨论了未来研究中需要解决的几个具体问题。为什么在特定细胞类型中会同时表达如此多不同的水通道蛋白?它们对不同溶质的选择性是如何控制的(特别是在具有多种通透特性的情况下)?水通道蛋白与其他分子之间的分子相互作用能告诉我们关于它们的调节以及它们参与特定细胞和生理过程的哪些信息?解决这些问题肯定会帮助我们更好地理解植物表达和调节如此多水通道蛋白异构体所具有的生理优势。

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