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Aquaporin Tetramer Composition Modifies the Function of Tobacco Aquaporins
Authors:Beate Otto  Norbert Uehlein  Sven Sdorra  Matthias Fischer  Muhammad Ayaz  Xana Belastegui-Macadam  Marlies Heckwolf  Magdalena Lachnit  Nadine Pede  Nadine Priem  André Reinhard  Sven Siegfart  Michael Urban  Ralf Kaldenhoff
Affiliation:From the Department of Applied Plant Sciences, Institute of Botany, Darmstadt University of Technology, D-64287 Darmstadt, Germany.;the §Max Planck Institute for Plant Breeding Research, D-50829 Köln, Germany, and ;Iden Biotechnology, 31192 Mutilva Baja, Spain
Abstract:Heterologous expression in yeast cells revealed that NtAQP1, a member of the so-called PIP1 aquaporin subfamily, did not display increased water transport activity in comparison with controls. Instead, an increased CO2-triggered intracellular acidification was observed. NtPIP2;1, which belongs to the PIP2 subfamily of plant aquaporins, behaved as a true aquaporin but lacked a CO2-related function. Results from split YFP experiments, protein chromatography, and gel electrophoresis indicated that the proteins form heterotetramers when coexpressed in yeast. Tetramer composition had effects on transport activity as demonstrated by analysis of artificial heterotetramers with a defined proportion of NtAQP1 to NtPIP2;1. A single NtPIP2;1 aquaporin in a tetramer was sufficient to significantly increase the water permeability of the respective yeast cells. With regard to CO2-triggered intracellular acidification, a cooperative effect was observed, where maximum rates were measured when the tetramer consisted of NtAQP1 aquaporins only. The results confirm the model of an aquaporin monomer as a functional unit for water transport and suggest that, for CO2-related transport processes, a structure built up by the tetramer is the basis of this function.
Keywords:Carbon Dioxide   Fluorescence   Membrane   Protein-Protein Interactions   Water Channel   Aquaporin Tetramer   Plant PIP
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