Caspase-3 Promotes Diabetic Kidney Disease Through Gasdermin E-Mediated Progression to Secondary Necrosis During

Si Wen1, Zhao-Hua Wang2, Cong-Xiao Zhang1

  • 1Department of Nephrology, First Hospital of China Medical University, Shenyang, People's Republic of China.

Abstract

Insights

Gasdermin E (GSDME)-dependent secondary necrosis significantly contributes to diabetic kidney disease (DKD) progression. Inhibiting caspase-3 or GSDME reduces renal injury and fibrosis in DKD models.

Area of Science:

  • Nephrology
  • Cell Biology
  • Molecular Medicine

Background:

  • Diabetic kidney disease (DKD) involves programmed cell death, but its mechanisms are unclear.
  • Gasdermin E (GSDME) cleavage by caspase-3 can switch apoptosis to secondary necrosis.
  • The role of GSDME in DKD pathogenesis remains largely unexplored.

Purpose of the Study:

  • To investigate the role of GSDME-dependent secondary necrosis in DKD.
  • To evaluate the therapeutic potential of caspase-3 inhibition in DKD.

Main Methods:

  • Administered caspase-3 inhibitor (Z-DEVD-FMK) to STZ-induced diabetic mice.
  • Assessed renal function, albuminuria, fibrosis, and secondary necrosis indicators.
  • Utilized high-glucose treated HK-2 cells to study GSDME activation and inhibition via Z-DEVD-FMK and GSDME shRNA.

Main Results:

  • Caspase-3 inhibition ameliorated DKD symptoms and tubulointerstitial fibrosis in mice.
  • High glucose induced GSDME cleavage and secondary necrosis in HK-2 cells.
  • Inhibition of GSDME reduced secondary necrosis and fibrogenesis in vitro.

Conclusions:

  • GSDME-dependent secondary necrosis is a key driver of renal injury in DKD.
  • Targeting GSDME offers a novel therapeutic strategy for DKD treatment.

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