Smac-mimetic-induced epithelial cell death reduces the growth of renal cysts
Lucy X Fan1, Xia Zhou, William E Sweeney
1Department of Internal Medicine and.
Abstract:
Past efforts to pharmacologically disrupt the development and growth of renal cystic lesions focused primarily on normalizing the activity of a specific signaling molecule, but the effects of stimulating apoptosis in the proliferating epithelial cells have not been well studied. Although benign, ADPKD renal cysts created by the sustained proliferation of epithelial cells resemble tumors, and malignant cell death can be achieved by cotreatment with TNF-α and a mimetic of second mitochondria-derived activator of caspase (Smac). Notably, TNF-α accumulates to high levels in ADPKD cyst fluid. Here, we report that an Smac-mimetic selectively induces TNF-α-dependent cystic renal epithelial cell death, leading to the removal of cystic epithelial cells from renal tissues and delaying cyst formation. In vitro, a Smac-mimetic (GT13072) induced the degradation of cIAP1 that is required but not sufficient for cell death. Cotreatment with TNF-α augmented the formation and activation of the RIPK1-dependent death complex and the degradation and cleavage of FLIP, an inhibitor of caspase-8, in renal cystic epithelial cells. This approach produced death specifically in Pkd1 mutant epithelial cells, with no effect on normal renal epithelial cells. Moreover, treatment with the Smac-mimetic slowed cyst and kidney enlargement and preserved renal function in two genetic strains of mice with Pkd1 mutations. Thus, our mechanistic data characterize an apoptotic pathway, activated by the selective synergy of an Smac-mimetic and TNF-α in renal cyst fluid, that attenuates cyst development, providing an innovative translational platform for the rational development of novel therapeutics for ADPKD.
Insights
This study shows that combining a Smac-mimetic drug with TNF-α selectively triggers cell death in Autosomal Dominant Polycystic Kidney Disease (ADPKD) cells, reducing cyst growth and preserving kidney function.
Area of Science:
- Cell Biology
- Pharmacology
- Nephrology
Background:
- Autosomal Dominant Polycystic Kidney Disease (ADPKD) is characterized by renal cyst formation due to sustained epithelial cell proliferation.
- Previous therapeutic strategies focused on signaling molecules, neglecting apoptosis induction in proliferating cells.
- Tumor necrosis factor-alpha (TNF-α) is found at high levels in ADPKD cyst fluid.
Purpose of the Study:
- To investigate the potential of stimulating apoptosis in ADPKD renal epithelial cells.
- To evaluate the efficacy of a Smac-mimetic in combination with TNF-α for ADPKD treatment.
Main Methods:
- In vitro studies using a Smac-mimetic (GT13072) and TNF-α on Pkd1 mutant and normal renal epithelial cells.
- Analysis of cell death pathways, including cIAP1 degradation and RIPK1-dependent death complex formation.
- In vivo studies using two genetic strains of mice with Pkd1 mutations.
Main Results:
- Smac-mimetic selectively induced TNF-α-dependent cell death in Pkd1 mutant renal epithelial cells, not normal cells.
- The combination treatment led to the removal of cystic epithelial cells and delayed cyst formation.
- In Pkd1 mutant mice, Smac-mimetic treatment slowed kidney enlargement and preserved renal function.
Conclusions:
- A novel apoptotic pathway, activated by the synergy of Smac-mimetic and TNF-α, effectively attenuates ADPKD cyst development.
- This approach offers a potential therapeutic strategy for ADPKD by selectively targeting proliferating cyst cells.
- Further development of Smac-mimetics and TNF-α combinations could lead to innovative ADPKD treatments.


