A Novel Intracellular K super(+)/H super(+) Antiporter Related to Na super(+)/H super(+) Antiporters Is Important for K super(+) Ion Homeostasis in Plants

In this study we have identified the first plant K super(+)/H super(+) exchanger, LeNHX2 from tomato (Lycopersicon esculentum Mill. cv. Moneymaker), which is a member of the intracellular NHX exchanger protein family. The LeNHX2 protein, belonging to a subfamily of plant NHX proteins closely related...

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Veröffentlicht in:The Journal of biological chemistry 2003-06, Vol.278 (25), p.22453-22459
Hauptverfasser: Venema, K, Belver, A, Marin-Manzano, M C, Rodriguez-Rosales, M P, Donaire, J P
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Sprache:eng
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Zusammenfassung:In this study we have identified the first plant K super(+)/H super(+) exchanger, LeNHX2 from tomato (Lycopersicon esculentum Mill. cv. Moneymaker), which is a member of the intracellular NHX exchanger protein family. The LeNHX2 protein, belonging to a subfamily of plant NHX proteins closely related to the yeast NHX1 protein, is abundant in roots and stems and is induced in leaves by short term salt or abscisic acid treatment. LeNHX2 complements the salt- and hygromycin- sensitive phenotype caused by NHX1 gene disruption in yeast, but affects accumulation of K super(+) and not Na super(+) in intracellular compartments. The LeNHX2 protein co-localizes with Prevacuolar and Golgi markers in a linear sucrose gradient in both yeast and plants. A histidine-tagged version of this protein could be purified and was shown to catalyze K super(+)/H super(+) exchange but only minor Na super(+)/H super(+) exchange in vitro. These data indicate that proper functioning of the endomembrane system relies on the regulation of K super(+) and H super(+) homeostasis by K super(+)/H super(+) exchangers.
ISSN:0021-9258
DOI:10.1074/jbc.M210794200