Selective inhibition of the sperm-specific lactate dehydrogenase isozyme-C4 by N-isopropyl oxamate

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Abstract

In the present study, we demonstrated that the attachment of the nonpolar isopropylic carbon chain in the nitrogen of oxamate, converted this competitive inhibitor of LDH isozymes into a powerful selective inhibitor of mouse LDH-C4. The comparative study of the inhibitory effect of oxamate and N-isopropyl oxamate on mouse LDH isozymes pointed out that the isopropylic carbon chain conferred upon N-isopropyl oxamate a high affinity for LDH-C4 and a marked decrease in the affinity for the other isozymes since oxamate showed more inhibitory effect on LDH-1 (K(i) = 0.06 mM) and LDH-5 (K(i) = 0.08 mM), and less inhibitory effect on LDH-C4 (K(i) = 0.25 mM). On the other hand, N-isopropyl oxamate showed the highest inhibitory effect on LDH-C4 (K(i) = 0.014 mM) and poor inhibitory effect on LDH-1 (K(i) = 0.4 mM) and LDH-5 (K(i) = 0.8 mM). Apparently, the enzymatic inactivation proceeded through a reversible binding of N-isopropyl oxamate, facilitated by nonpolar interactions with a hydrophobic region present only in the active site of mouse LDH-C4, resulting in a selective inhibition of this isozyme in comparison with the other LDH isozymes. N-isopropyl oxamate was also a powerful competitive inhibitor of LDH-C4 (K(i) = 0.015 mM) compared with oxamate (K(i) = 0.35 mM), using α-ketoisocaproate as a substrate.

Original languageEnglish
Pages (from-to)16-22
Number of pages7
JournalBiochimica et Biophysica Acta - Protein Structure and Molecular Enzymology
Volume1343
Issue number1
DOIs
StatePublished - 14 Nov 1997

Keywords

  • Hydrophobic interaction
  • LDH isozyme
  • LDH(x)
  • LDH-C4 inhibition
  • N-Isopropyl oxamate

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