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Preferential KAT1-KAT2 Heteromerization Determines Inward K+ Current Properties in Arabidopsis Guard Cells
Authors:Anne Lebaudy  Fran?ois Pascaud  Anne-Aliénor Véry  Carine Alcon  Ingo Dreyer  Jean-Baptiste Thibaud  Beno?t Lacombe
Affiliation:From Biochimie et Physiologie Moléculaire des Plantes, CNRS UMR 5004, Institut National de la Recherche Agronomique (INRA) U386, Montpellier SupAgro, Université Montpellier II, Place Viala, 34060 Montpellier Cedex, France and ;the §Heisenberg-Gruppe Biophysik und Molekulare Pflanzenbiologie, Institut für Biochemie und Biologie, Universität Potsdam, Karl-Liebknecht-Strasse 24/25, Haus 20, 14476 Potsdam-Golm, Germany
Abstract:Guard cells adjust their volume by changing their ion content due to intense fluxes that, for K+, are believed to flow through inward or outward Shaker channels. Because Shaker channels can be homo- or heterotetramers and Arabidopsis guard cells express at least five genes encoding inward Shaker subunits, including the two major ones, KAT1 and KAT2, the molecular identity of inward Shaker channels operating therein is not yet completely elucidated. Here, we first addressed the properties of KAT1-KAT2 heteromers by expressing KAT1-KAT2 tandems in Xenopus oocytes. Then, computer analyses of the data suggested that coexpression of free KAT1 and KAT2 subunits resulted mainly in heteromeric channels made of two subunits of each type due to some preferential association of KAT1-KAT2 heterodimers at the first step of channel assembly. This was further supported by the analysis of KAT2 effect on KAT1 targeting in tobacco cells. Finally, patch-clamp recordings of native inward channels in wild-type and mutant genotypes strongly suggested that this preferential heteromerization occurs in planta and that Arabidopsis guard cell inward Shaker channels are mainly heteromers of KAT1 and KAT2 subunits.
Keywords:Biophysics   Channels/Potassium   Membrane   Methods/Computer Modeling   Tissue/Organ Systems/Oocyte   Transport   Transport/Potassium   Plant   Guard Cells   Heteromerization
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