Probing the Influence of Linker Length and Flexibility in the Design and Synthesis of New Trehalase Inhibitors

Molecules. 2018 Feb 16;23(2):436. doi: 10.3390/molecules23020436.

Abstract

This work aims to synthesize new trehalase inhibitors selective towards the insect trehalase versus the porcine trehalase, in view of their application as potentially non-toxic insecticides and fungicides. The synthesis of a new pseudodisaccharide mimetic 8, by means of a stereoselective α-glucosylation of the key pyrrolizidine intermediate 13, was accomplished. The activity of compound 8 as trehalase inhibitor towards C.riparius trehalase was evaluated and the results showed that 8 was active in the μM range and showed a good selectivity towards the insect trehalase. To reduce the overall number of synthetic steps, simpler and more flexible disaccharide mimetics 9-11 bearing a pyrrolidine nucleus instead of the pyrrolizidine core were synthesized. The biological data showed the key role of the linker chain's length in inducing inhibitory properties, since only compounds 9 (α,β-mixture), bearing a two-carbon atom linker chain, maintained activity as trehalase inhibitors. A proper change in the glucosyl donor-protecting groups allowed the stereoselective synthesis of the β-glucoside 9β, which was active in the low micromolar range (IC50 = 0.78 μM) and 12-fold more potent (and more selective) than 9α towards the insect trehalase.

Keywords: glycosylation reaction; iminosugars; pseudodisaccharides; pyrrolidines; pyrrolizidines; trehalase inhibitors.

MeSH terms

  • Animals
  • Disaccharides / chemical synthesis
  • Disaccharides / chemistry*
  • Enzyme Inhibitors / chemical synthesis*
  • Enzyme Inhibitors / chemistry
  • Insecta / drug effects
  • Insecta / enzymology
  • Insecticides / chemistry*
  • Kinetics
  • Substrate Specificity
  • Swine
  • Trehalase / antagonists & inhibitors*
  • Trehalase / chemistry

Substances

  • Disaccharides
  • Enzyme Inhibitors
  • Insecticides
  • Trehalase