Calpain inhibition: a therapeutic strategy targeting multiple disease states

N O Carragher1

  • 1The Beaston Insititue for Cancer Research, Cancer Research UK, Glasgow G61 1BD, Scotland, UK. neil.carragher@astrazeneca.com

Insights

Calpains are calcium-dependent proteases crucial for cell function, regulated by calpastatin. Dysregulation links to diseases, but developing specific calpain inhibitors remains challenging.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Physiology

Background:

  • Calpains are calcium-dependent cysteine proteases with diverse roles in cell physiology.
  • Calpain activity is regulated by calpastatin, an endogenous inhibitor.
  • Dysregulation of the calpain-calpastatin system is implicated in numerous human diseases.

Purpose of the Study:

  • To review recent advances in understanding calpain structure and regulation.
  • To discuss the development and limitations of current calpain inhibitors.
  • To explore strategies for designing more specific calpain inhibitors.

Main Methods:

  • Literature review of structural and functional studies on calpains and calpastatin.
  • Analysis of existing classes of calpain inhibitors and their mechanisms.
  • Discussion of emerging therapeutic strategies targeting calpain outside its catalytic site.

Main Results:

  • Elucidation of tertiary structures of calpain 2 and calpain 4.
  • Identification of novel regulatory mechanisms for calpain activity.
  • Demonstration of active-site inhibitors' efficacy in preclinical models.
  • Recognition of specificity limitations in current inhibitor classes.

Conclusions:

  • Advances in structural biology offer new avenues for calpain inhibitor design.
  • Developing inhibitors with enhanced specificity is crucial for therapeutic applications.
  • Targeting domains outside the catalytic site may yield more selective calpain inhibitors.