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Proteases in renal cell death: calpains mediate cell death produced by diverse toxicants
R G Schnellmann1, S W Williams
1Department of Pharmacology and Toxicology, University of Arkansas for Medical Sciences, Little Rock 72205-7199, USA. schnellmannrickyg@exchange.uams.edu
Abstract:
The role of proteases in renal cell death has received limited investigation. Calpains are non-lysosomal cysteine proteases that are Ca+2 activated. Calpain inhibitors that block the active site of calpains (calpain inhibitor 1 and 2) or the Ca+2 binding domain of calpains (PD150606) decreased calpain activity in rabbit renal proximal tubule (RPT) suspensions. The inhibition of calpain activity decreased cell death produced by the diverse toxicants antimycin A (mitochondrial inhibitor), tetrafluroethyl-L-cysteine (nephrotoxic halocarbon), bromohydroquinone (nephro-toxic quinone), t-butylhydroperoxide (model oxidant) and ionomycin (Ca+2 ionophore). In summary, calpains appear to play a common and critical role in cell injury produced by diverse toxicants with different mechanisms of action. The general cysteine protease inhibitor trans-epoxysuccinyl-L-leucylamido (4-guanidino)-butane (E-64) decreased antimycin A- and tetrafluoroethyl-L-cysteine-induced cell death but had no effect on bromohydroquinone- or t-butylhydroperoxide-induced cell death. Serine/cysteine protease inhibitors (antipain, leupeptin) were not cytoprotective to RPT exposed to any of the toxicants. The cytoprotection associated with E-64 correlated with inhibition of lysosomal cathepsins and E-64 was only cytoprotective after some cell death had occurred. Since some cell death occurred prior to the E-64 cytoprotective effect, lysosomal cathepsins may be released from dying cells and subsequently target the remaining viable cells.
Insights
Calpains, calcium-activated proteases, play a key role in renal proximal tubule cell death from various toxicants. Inhibiting calpains reduces cell injury, suggesting a common protective mechanism against kidney damage.
Area of Science:
- Biochemistry
- Cell Biology
- Nephrology
Background:
- Protease involvement in renal cell death is understudied.
- Calpains are calcium-activated cysteine proteases found in non-lysosomal compartments.
Purpose of the Study:
- To investigate the role of calpains in renal proximal tubule (RPT) cell death.
- To determine if calpain inhibition offers protection against diverse nephrotoxicants.
Main Methods:
- Utilized specific calpain inhibitors (calpain inhibitor 1 and 2, PD150606) in rabbit RPT suspensions.
- Assessed cell death induced by various toxicants including antimycin A, tetrafluoroethyl-L-cysteine, bromohydroquinone, t-butylhydroperoxide, and ionomycin.
- Examined the effects of general cysteine protease inhibitor (E-64) and serine/cysteine protease inhibitors (antipain, leupeptin).
Main Results:
- Calpain inhibitors significantly decreased RPT cell death induced by all tested toxicants.
- The general cysteine protease inhibitor E-64 showed cytoprotection against some toxicants but not others, correlating with cathepsin inhibition.
- Serine/cysteine protease inhibitors did not provide cytoprotection.
Conclusions:
- Calpains are critical mediators of RPT cell injury caused by diverse mechanisms.
- Targeting calpains represents a potential therapeutic strategy for acute kidney injury.
- Lysosomal cathepsins may contribute to secondary cell death following initial toxic insult.