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PLANT PHYSIOLOGY , Vol 111, Issue 2 589-595, Copyright © 1996 by American Society of Plant Biologists
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GENE REGULATION AND MOLECULAR GENETICS |
Signals Regulating the Expression of the Nuclear Gene Encoding Alternative Oxidase of Plant Mitochondria
G. C. Vanlerberghe and L. Mclntosh
Department of Botany and Division of Life Sciences, University of Toronto, Scarborough Campus, 1265 Military Trail, Scarborough, Ontario, Canada M1C 1A4 (G.C.V.)
Suspension cells of tobacco (Nicotiana tabacum L. cv Bright Yellow) were
used to investigate signals regulating the expression of the nuclear gene
Aox1 encoding the mitochondrial alternative oxidase (AOX) protein
responsible for cyanide-resistant respiration in plants. We found that an
increase in the tricarboxylic acid cycle intermediate citrate (either after
its exogenous supply to cells or after inhibition of aconitase by
monofluoroacetate) caused a rapid and dramatic increase in the steady-state
level of Aox1 mRNA and AOX protein. This led to a large increase in the
capacity for AOX respiration, defined as the amount of salicylhydroxamic
acid-sensitive O2 uptake by cells in the presence of potassium cyanide. The
results indicate that citrate may be an important signal metabolite
regulating Aox1 gene expression. A number of other treatments were also
identified that rapidly induced the level of Aox1 mRNA and AOX capacity.
These included short-term incubation of cells with 10 mM acetate, 2 [mu]M
antimycin A, 5 mM H2O2, or 1 mM cysteine. For some of these treatments,
induction of AOX occurred without an increase in cellular citrate level,
indicating that other signals (possibly related to oxidative stress
conditions) are also important in regulating Aox1 gene expression. The
signals influencing Aox1 gene expression are discussed with regard to the
potential function(s) of AOX to modulate tricarboxylic acid cycle
metabolism and/or to prevent the generation of active oxygen species by the
mitochondrial electron transport chain.
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