The Kinetic Investigation of D-Hydroxyisovalerate Dehydrogenase from Fusarium sambucinum

  • Lee, Chan (Department of Food Science and Technology, Chung-Ang University) ;
  • Goerisch, Helmut (Institut fuer Biotechnilogie FG Technische Biochemie der Technische Universitaet Berlin) ;
  • Zocher, Rainer (Institut fuer Biochemie und Molekulare Biologie, Technischen Universitaet Berlin)
  • Received : 2000.01.21
  • Accepted : 2000.03.11
  • Published : 2000.05.31

Abstract

The steady-state investigation of the mechanism of Dhydroxyisovalerate dehydrogenase was performed in order to understand this type of kinetic patterns. The initial velocity was measured with various amounts of both substrates, NADPH and 2-ketoisovalerate. Double reciprocal plots gave patterns that conversed on or near the abscissa. Binding studies indicated that NADPH bound first to the enzyme. The product $NADP^+$ was found to be a competitive inhibitor with respect to NADPH at a constant concentration of 2-ketoisovalerate. However, it showed noncompetitive inhibition against 2-ketoisovalerate at a fixed amount of NADPH. Another product, D-hydroxyisovalerate, was a non-competitive inhibitor versus NADPH and 2-ketoisovalerate at constant levels of 2-ketoisovalerate and NADPH, respectively. These results were comparable with an ordered bi-bi mechanism, in which NADPH bound first to the enzyme, followed by the binding of 2- ketoisovalerate. $NADP^+$ is the last product to be released. The ordered reaction manner of D-hydroxyisovalerate dehydrogenase from 2-ketoisovalerate to D-hydroxyisovalerate allows the accurate regulation of valine metabolism and it may lead to the regulation of total biosynthesis of enniatins in the Fusarium species.

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