Activation of rat liver microsomal glutathione transferase by hepsin

Shinji Nakama1, Natsuki Oshiro, Yoko Aniya

  • 1Laboratory of Molecular Genetics and Pharmacology, School of Health Sciences, Faculty of Medicine, University of the Ryukyus, USA.

Insights

Rat liver microsomal glutathione transferase (MGST1) is activated by hepsin through disulfide-linked dimer formation, not proteolysis. This interaction enhances MGST1 activity before its degradation.

Area of Science:

  • Biochemistry
  • Enzymology
  • Molecular Biology

Background:

  • Microsomal glutathione transferase 1 (MGST1) activity is regulated by limited proteolysis.
  • Hepsin, a rat liver microsomal protease, was previously identified as an activator of MGST1.

Purpose of the Study:

  • To investigate the mechanism by which hepsin activates MGST1.
  • To elucidate the role of disulfide bonds and protein interactions in MGST1 activation.

Main Methods:

  • Incubation of MGST1 and hepsin at room temperature.
  • Treatment with dithiothreitol (a reducing agent) to assess disulfide bond involvement.
  • Electrophoresis to detect MGST1 dimer formation.
  • Use of the protease inhibitor benzamidine to differentiate proteolysis from other activation mechanisms.

Main Results:

  • Hepsin treatment markedly increased MGST1 activity, which was reversed by dithiothreitol.
  • Electrophoresis revealed MGST1 dimer formation, not a proteolytic product, upon hepsin treatment.
  • MGST1 dimer formation and increased activity occurred even with a protease inhibitor.
  • Prolonged incubation led to both MGST1 dimer formation and subsequent proteolytic degradation of the dimer.

Conclusions:

  • Hepsin activates MGST1 by stimulating the formation of disulfide-linked MGST1 dimers.
  • This disulfide-linked dimer formation leads to increased MGST1 activity.
  • Hepsin subsequently facilitates the degradation of the activated MGST1 dimer.
  • The scavenger receptor cysteine-rich (SRCR) domain of hepsin likely mediates this interaction via thiol/disulfide exchange.