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Research ArticleDevelopment and Growth Regulation
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Activation of Plasma Membrane NADH Oxidase Activity by Products of Phospholipase A

Andrew O. Brightman, Xiao Zhong Zhu, D. James Morré
Andrew O. Brightman
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Xiao Zhong Zhu
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D. James Morré
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Published August 1991. DOI: https://doi.org/10.1104/pp.96.4.1314

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Abstract

An auxin-stimulated NADH oxidase activity (NADH oxidase I) of plasma membrane vesicles, highly purified by aqueous two-phase partition from soybean (Glycine max Merr.) hypocotyls was activated by lysophospholipids and fatty acids, both products of phospholipase A action. The activation of NADH oxidase activity occurred slowly, suggesting a mechanism whereby the lipids acted to stabilize the enzyme in a more active configuration. In contrast to activation by lipids, the activation by auxin was rapid. The average Km of the NADH oxidase after activation by lipids was four- to fivefold less than the Km before activation. The Vmax was unchanged by activation. The increases occurred in the presence of detergent and thus were not a result of exposure of latent active sites. Also, the activation did not result from activation of a peroxidase or lipoxygenase. Fatty acid esters, where growth promoting effects have been reported, also activated the auxin-stimulated oxidase. However, the auxin stimulation of NADH oxidase I did not appear to be obligatorily mediated by phospholipase A, nor did inhibitors of phospholipase A2 block the stimulation of the oxidase by auxins.

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Activation of Plasma Membrane NADH Oxidase Activity by Products of Phospholipase A
Andrew O. Brightman, Xiao Zhong Zhu, D. James Morré
Plant Physiology Aug 1991, 96 (4) 1314-1320; DOI: 10.1104/pp.96.4.1314

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Activation of Plasma Membrane NADH Oxidase Activity by Products of Phospholipase A
Andrew O. Brightman, Xiao Zhong Zhu, D. James Morré
Plant Physiology Aug 1991, 96 (4) 1314-1320; DOI: 10.1104/pp.96.4.1314
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Plant Physiology
Vol. 96, Issue 4
August 1991
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More in this TOC Section

  • The rms1 Mutant of Pea Has Elevated Indole-3-Acetic Acid Levels and Reduced Root-Sap Zeatin Riboside Content but Increased Branching Controlled by Graft-Transmissible Signal(s)
  • Bacterial Cellulose-Binding Domain Modulates in Vitro Elongation of Different Plant Cells
  • Gibberellin Dose-Response Regulation of GA4 Gene Transcript Levels in Arabidopsis
Show more DEVELOPMENT AND GROWTH REGULATION

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