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水通道(水孔蛋白)的发现

The Discovery of Water Channels (Aquaporins).

作者信息

Brown Dennis

机构信息

Center for Systems Biology and Program in Membrane Biology/Division of Nephrology, Massachusetts General Hospital and Harvard Medical School, Boston, MA, USA.

出版信息

Ann Nutr Metab. 2017;70 Suppl 1:37-42. doi: 10.1159/000463061. Epub 2017 Jun 15.

DOI:10.1159/000463061
PMID:28614812
Abstract

The movement of water into and out of cells is a fundamental biological process that is essential for life. Such water movement not only regulates the activity of individual cells but also is responsible for the functioning of many organ systems and for maintaining whole body water balance. It had long been suspected that water movement across biological cell membranes was in some way enhanced or facilitated by pores or channels, but the search to identify these channels was long and tedious. As is often the case in science, the secret of the water channel was eventually discovered by chance in 1992 by Peter Agre and his colleagues at the Johns Hopkins University in Baltimore, who were working on red blood cell membrane proteins. This "first" water channel was originally named CHIP28 and is now known as aquaporin 1. Agre received the Nobel Prize in Chemistry in 2003 for this discovery. There are currently 13 known aquaporins in mammals, distributed in most tissues, but many more have been identified in lower organisms and in the plant kingdom. The involvement of aquaporins in processes such as urinary concentration and body fluid homeostasis, brain function, glandular secretion, skin hydration, male fertility, hearing, vision, and most important body functions that can be imagined are now all under intense scientific scrutiny. Moreover, defects in aquaporin function have been related to various disease conditions and pathological states. This brief review will discuss their background, discovery, and function in selected bodily processes, especially focusing on hydration.

摘要

水进出细胞的运动是一项对生命至关重要的基本生物学过程。这种水的运动不仅调节单个细胞的活性,还负责许多器官系统的功能以及维持全身水平衡。长期以来,人们一直怀疑水穿过生物细胞膜的运动在某种程度上是由孔隙或通道增强或促进的,但寻找这些通道的过程漫长而乏味。正如科学中经常发生的那样,水通道的秘密最终于1992年由彼得·阿格雷及其在巴尔的摩约翰·霍普金斯大学的同事偶然发现,他们当时正在研究红细胞膜蛋白。这个“首个”水通道最初被命名为CHIP28,现在被称为水通道蛋白1。阿格雷因这一发现于2003年获得诺贝尔化学奖。目前在哺乳动物中已知有13种水通道蛋白,分布于大多数组织中,但在低等生物和植物界中已鉴定出更多种类。水通道蛋白参与诸如尿液浓缩和体液稳态、脑功能、腺体分泌、皮肤水合作用、男性生育能力、听力、视力以及几乎所有可以想象到的重要身体功能等过程,目前都受到了科学界的密切审视。此外,水通道蛋白功能缺陷与各种疾病状况和病理状态有关。本简要综述将讨论它们的背景、发现以及在特定身体过程中的功能,尤其着重于水合作用。

相似文献

1
The Discovery of Water Channels (Aquaporins).水通道(水孔蛋白)的发现
Ann Nutr Metab. 2017;70 Suppl 1:37-42. doi: 10.1159/000463061. Epub 2017 Jun 15.
2
Water channel proteins: from their discovery in 1985 in Cluj-Napoca, Romania, to the 2003 Nobel Prize in Chemistry.水通道蛋白:从1985年在罗马尼亚克卢日-纳波卡被发现,到2003年获得诺贝尔化学奖。
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3
The 2009 Lindau Nobel Laureate Meeting: Peter Agre, Chemistry 2003.2009年林道诺贝尔奖获得者会议:彼得·阿格雷,2003年诺贝尔化学奖得主。
J Vis Exp. 2009 Dec 9(34):1565. doi: 10.3791/1565.
4
The first water channel protein (later called aquaporin 1) was first discovered in Cluj-Napoca, Romania.首个水通道蛋白(后被称为水通道蛋白1)最初是在罗马尼亚克卢日-纳波卡被发现的。
Rom J Physiol. 2004 Jan-Jun;41(1-2):3-20.
5
Drugging aquaporins.水通道蛋白药物研发。
Biochim Biophys Acta Biomembr. 2024 Feb;1866(2):184164. doi: 10.1016/j.bbamem.2023.184164. Epub 2023 May 3.
6
The story of the discovery of aquaporins: convergent evolution of ideas--but who got there first?水通道蛋白的发现历程:思想的趋同演化——但究竟谁先达成?
Cell Mol Biol (Noisy-le-grand). 2006 Oct 30;52(7):2-5.
7
Peter Agre, 2003 Nobel Prize winner in chemistry.彼得·阿格雷,2003年诺贝尔化学奖得主。
J Am Soc Nephrol. 2004 Apr;15(4):1093-5. doi: 10.1097/01.asn.0000118814.47663.7d.
8
Aquaporins (water channels): role in vasopressin-activated water transport.水通道蛋白(水通道):在血管加压素激活的水转运中的作用。
Proc Soc Exp Biol Med. 1998 Dec;219(3):183-99. doi: 10.3181/00379727-219-44332.
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A brief survey of aquaporins and their implications for renal physiology.水通道蛋白及其对肾脏生理学影响的简要综述。
Clin Lab Sci. 2006 Spring;19(2):70-9.
10
Birth of water channel proteins-the aquaporins.水通道蛋白——水通道蛋白质的诞生。
Cell Biol Int. 2003;27(9):701-9. doi: 10.1016/s1065-6995(03)00171-9.

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