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Molecular determinants of ammonia and urea conductance in plant aquaporin homologs

Authors :
Dynowski M
Mayer M
Moran O
Ludewig U.
Source :
FEBS letters, 582 (2008): 2458–2462., info:cnr-pdr/source/autori:Dynowski M, Mayer M, Moran O, Ludewig U./titolo:Molecular determinants of ammonia and urea conductance in plant aquaporin homologs./doi:/rivista:FEBS letters (Print)/anno:2008/pagina_da:2458/pagina_a:2462/intervallo_pagine:2458–2462/volume:582
Publication Year :
2008
Publisher :
Elsevier Science Publishers, Amsterdam , Paesi Bassi, 2008.

Abstract

Aquaporins and/or aquaglyceroporins regulate the permeability of plant membranes to water and small, uncharged molecules. Using molecular simulations with a plant plasma membrane aquaporin tetramer, the residues in the channel constriction region were identified as the crucial determinants of ammonia and urea conductance. The impact of these residues was experimentally verified using AtPIP2;1 pore mutants. Several, but not all, mutants with a NIP-like selectivity filter promoted yeast growth on urea or ammonia as sole sources of nitrogen. TIP-like mutants conducted urea but not NH(3), and a residue without direct contact to the pore lumen was critical for conduction in the mutants.

Details

Database :
OpenAIRE
Journal :
FEBS letters, 582 (2008): 2458–2462., info:cnr-pdr/source/autori:Dynowski M, Mayer M, Moran O, Ludewig U./titolo:Molecular determinants of ammonia and urea conductance in plant aquaporin homologs./doi:/rivista:FEBS letters (Print)/anno:2008/pagina_da:2458/pagina_a:2462/intervallo_pagine:2458–2462/volume:582
Accession number :
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