Interplay of Enzyme Therapy and Dietary Management of Murine Homocystinuria

Nutrients. 2020 Sep 22;12(9):2895. doi: 10.3390/nu12092895.

Abstract

Albeit effective, methionine/protein restriction in the management of classical homocystinuria (HCU) is suboptimal and hard to follow. To address unmet need, we developed an enzyme therapy (OT-58), which effectively corrected disease symptoms in various mouse models of HCU in the absence of methionine restriction. Here we evaluated short- and long-term efficacy of OT-58 on the background of current dietary management of HCU. Methionine restriction resulted in the lowering of total homocysteine (tHcy) by 38-63% directly proportional to a decreased methionine intake (50-12.5% of normal). Supplemental betaine resulted in additional lowering of tHcy. OT-58 successfully competed with betaine and normalized tHcy on the background of reduced methionine intake, while substantially lowering tHcy in mice on normal methionine intake. Betaine was less effective in lowering tHcy on the background of normal or increased methionine intake, while exacerbating hypermethioninemia. OT-58 markedly reduced both hyperhomocysteinemia and hypermethioninemia caused by the diets and betaine in HCU mice. Withdrawal of betaine did not affect improved metabolic balance, which was established and solely maintained by OT-58 during periods of fluctuating dietary methionine intake. Taken together, OT-58 may represent novel, highly effective enzyme therapy for HCU performing optimally in the presence or absence of dietary management of HCU.

Keywords: enzyme replacement therapy; homocysteine; inborn error of metabolism; mouse model; rare disease; sulfur metabolism; tandem mass spectrometry.

MeSH terms

  • Animals
  • Betaine / administration & dosage
  • Cystathionine beta-Synthase / therapeutic use*
  • Enzyme Therapy / methods*
  • Female
  • Homocysteine / blood
  • Homocystinuria / diet therapy*
  • Homocystinuria / drug therapy*
  • Humans
  • Male
  • Methionine / administration & dosage
  • Methionine / blood
  • Mice
  • Recombinant Proteins / therapeutic use*

Substances

  • Recombinant Proteins
  • Homocysteine
  • Betaine
  • Methionine
  • Cystathionine beta-Synthase