Regulation of alternative oxidase kinetics by pyruvate and intermolecular disulfide bond redox status in soybean seedling mitochondria.

A L Umbach, J T Wiskich, J N Siedow
Author Information
  1. A L Umbach: Department of Botany, Duke University, Durham, NC 27708-0338.

Abstract

Two factors known to regulate plant mitochondrial cyanide-resistant alternative oxidase activity, pyruvate and the redox status of the enzyme's intermolecular disulfide bond, were shown to differently affect activity in isolated soybean seedling mitochondria. Pyruvate stimulated alternative oxidase activity at low levels of reduced ubiquinone, shifting the threshold level of ubiquinone reduction for enzyme activity to a lower value. The disulfide bond redox status determined the maximum enzyme activity obtainable in the presence of pyruvate, with the highest rates occurring when the bond was reduced. With variations in cellular pyruvate levels and in the proportion of reduced alternative oxidase protein, a wide range of enzyme activity is possible in vivo.

MeSH Term

Disulfides
Dithiothreitol
Kinetics
Mitochondria
Mitochondrial Proteins
Oxidation-Reduction
Oxidoreductases
Plant Proteins
Pyruvates
Pyruvic Acid
Quinones
Glycine max

Chemicals

Disulfides
Mitochondrial Proteins
Plant Proteins
Pyruvates
Quinones
Pyruvic Acid
Oxidoreductases
alternative oxidase
Dithiothreitol