Literature DB >> 10795927

Role of water channels in fluid transport studied by phenotype analysis of aquaporin knockout mice.

A S Verkman1, B Yang, Y Song, G T Manley, T Ma.   

Abstract

Aquaporin-type water channels are expressed widely in mammalian tissues, particularly in the kidney, lung, eye and gastrointestinal tract. To define the role of aquaporins in organ physiology, we have generated and analysed transgenic mice lacking aquaporins (AQP) 1, 3, 4 and 5. Multiple phenotype abnormalities were found in the null mice. For example, in kidney, deletion of AQP1 or AQP3 produced marked polyuria whereas AQP4 deletion produced only a mild concentrating defect. Deletion of AQP5, the apical membrane water channel in the salivary gland, caused defective saliva production. Deletion of AQP1 or AQP5, water channels in lung endothelia and epithelia, resulted in a 90% decrease in airspace-capillary water permeability. In the brain, deletion of AQP4 conferred marked protection from brain swelling induced by acute water intoxication and ischaemic stroke. The general paradigm that has emerged from these phenotype studies is that aquaporins facilitate rapid near-isosmolar transepithelial fluid absorption/secretion, as well as rapid vectorial water movement driven by osmotic gradients. However, we have found many examples in which the tissue-specific expression of an aquaporin is not associated with any apparent phenotypic abnormality. The physiological data on aquaporin null mice suggest the utility of aquaporin blockers and aquaporin gene replacement in selected human diseases.

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Year:  2000        PMID: 10795927     DOI: 10.1111/j.1469-445x.2000.tb00028.x

Source DB:  PubMed          Journal:  Exp Physiol        ISSN: 0958-0670            Impact factor:   2.969


  37 in total

Review 1.  Experimental models to study cholangiocyte biology.

Authors:  Pamela S Tietz; Xian-Ming Chen; Ai-Yu Gong; Robert C Huebert; Anatoliy Masyuk; Tatyana Masyuk; Patrick L Splinter; Nicholas F LaRusso
Journal:  World J Gastroenterol       Date:  2002-02       Impact factor: 5.742

2.  Expression and localization of aquaporins, members of the water channel family, during development of the rat submandibular gland.

Authors:  Tetsuya Akamatsu; Most Nahid Parvin; Kwartarini Murdiastuti; Chisato Kosugi-Tanaka; Chenjuan Yao; Osamu Miki; Norio Kanamori; Kazuo Hosoi
Journal:  Pflugers Arch       Date:  2003-06-28       Impact factor: 3.657

3.  Aquaporin Z of Escherichia coli: reassessment of its regulation and physiological role.

Authors:  Eric Soupene; Natalie King; Haidy Lee; Sydney Kustu
Journal:  J Bacteriol       Date:  2002-08       Impact factor: 3.490

4.  Water permeability of the mammalian cochlea: functional features of an aquaporin-facilitated water shunt at the perilymph-endolymph barrier.

Authors:  A Eckhard; M Müller; A Salt; J Smolders; H Rask-Andersen; H Löwenheim
Journal:  Pflugers Arch       Date:  2014-01-03       Impact factor: 3.657

Review 5.  Current developments in salivary diagnostics.

Authors:  Craig S Miller; Joseph D Foley; Alison L Bailey; Charles L Campell; Roger L Humphries; Nicolaos Christodoulides; Pierre N Floriano; Glennon Simmons; Bryon Bhagwandin; James W Jacobson; Spencer W Redding; Jeffrey L Ebersole; John T McDevitt
Journal:  Biomark Med       Date:  2010-02       Impact factor: 2.851

6.  Estrogen action and male fertility: roles of the sodium/hydrogen exchanger-3 and fluid reabsorption in reproductive tract function.

Authors:  Q Zhou; L Clarke; R Nie; K Carnes; L W Lai; Y H Lien; A Verkman; D Lubahn; J S Fisher; B S Katzenellenbogen; R A Hess
Journal:  Proc Natl Acad Sci U S A       Date:  2001-11-06       Impact factor: 11.205

7.  Rapid Identification of Novel Inhibitors of the Human Aquaporin-1 Water Channel.

Authors:  Rajkumar V Patil; Shouxi Xu; Alfred N van Hoek; Andrew Rusinko; Zixia Feng; Jesse May; Mark Hellberg; Najam A Sharif; Martin B Wax; Macarena Irigoyen; Grant Carr; Tom Brittain; Peter Brown; Damon Colbert; Sindhu Kumari; Kulandaiappan Varadaraj; Alok K Mitra
Journal:  Chem Biol Drug Des       Date:  2016-01-17       Impact factor: 2.817

8.  Therapeutic targeting of astrocytes after traumatic brain injury.

Authors:  Jessica Shields; Donald E Kimbler; Walid Radwan; Nathan Yanasak; Sangeetha Sukumari-Ramesh; Krishnan M Dhandapani
Journal:  Transl Stroke Res       Date:  2011-11-09       Impact factor: 6.829

9.  A microfluidic chip for real-time studies of the volume of single cells.

Authors:  Susan Z Hua; Thomas Pennell
Journal:  Lab Chip       Date:  2008-10-23       Impact factor: 6.799

10.  Expression of aquaporin 5 and the AQP5 polymorphism A(-1364)C in association with peritumoral brain edema in meningioma patients.

Authors:  Nicole Lambertz; Nicolai El Hindy; Cordula Adler; Katharina Rump; Michael Adamzik; Kathy Keyvani; Agnes Bankfalvi; Winfried Siffert; I Erol Sandalcioglu; Hagen S Bachmann
Journal:  J Neurooncol       Date:  2013-02-08       Impact factor: 4.130

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