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ABCA1 deficiency contributes to podocyte pyroptosis priming via the APE1/IRF1 axis in diabetic kidney disease
Marie Ito1,2, Gloria Michelle Ducasa3, Judith David Molina3
1Department of Medicine, Katz Family Division of Nephrology and Hypertension, Peggy and Harold Katz Family Drug Discovery Center, University of Miami, Miller School of Medicine, University of Miami, Miami, FL, 33136, USA. marieitou@gmail.com.
Abstract:
Decreased ATP Binding Cassette Transporter A1 (ABCA1) expression and caspase-4-mediated noncanonical inflammasome contribution have been described in podocytes in diabetic kidney disease (DKD). To investigate a link between these pathways, we evaluated pyroptosis-related mediators in human podocytes with stable knockdown of ABCA1 (siABCA1) and found that mRNA levels of IRF1, caspase-4, GSDMD, caspase-1 and IL1β were significantly increased in siABCA1 compared to control podocytes and that protein levels of caspase-4, GSDMD and IL1β were equally increased. IRF1 knockdown in siABCA1 podocytes prevented increases in caspase-4, GSDMD and IL1β. Whereas TLR4 inhibition did not decrease mRNA levels of IRF1 and caspase-4, APE1 protein expression increased in siABCA1 podocytes and an APE1 redox inhibitor abrogated siABCA1-induced expression of IRF1 and caspase-4. RELA knockdown also offset the pyroptosis priming, but ChIP did not demonstrate increased binding of NFκB to IRF1 promoter in siABCA1 podocytes. Finally, the APE1/IRF1/Casp1 axis was investigated in vivo. APE1 IF staining and mRNA levels of IRF1 and caspase 11 were increased in glomeruli of BTBR ob/ob compared to wildtype. In conclusion, ABCA1 deficiency in podocytes caused APE1 accumulation, which reduces transcription factors to increase the expression of IRF1 and IRF1 target inflammasome-related genes, leading to pyroptosispriming.
Insights
ATP Binding Cassette Transporter A1 (ABCA1) deficiency in podocytes triggers pyroptosis by increasing APE1, IRF1, and inflammasome gene expression, contributing to diabetic kidney disease progression.
Area of Science:
- Nephrology
- Molecular Biology
- Immunology
Background:
- Diabetic kidney disease (DKD) is associated with reduced ATP Binding Cassette Transporter A1 (ABCA1) expression in podocytes.
- Caspase-4-mediated noncanonical inflammasome activation is implicated in DKD pathogenesis.
Purpose of the Study:
- To investigate the link between ABCA1 deficiency and pyroptosis-related mediators in podocytes.
- To elucidate the molecular mechanisms underlying ABCA1's role in DKD-associated inflammation.
Main Methods:
- Stable knockdown of ABCA1 (siABCA1) in human podocytes.
- Analysis of pyroptosis-related gene and protein expression (IRF1, caspase-4, GSDMD, caspase-1, IL1β).
- Inhibition studies using APE1 redox inhibitor and RELA knockdown; in vivo validation in BTBR ob/ob mice.
Main Results:
- siABCA1 podocytes showed significantly increased mRNA and protein levels of IRF1, caspase-4, GSDMD, and IL1β.
- IRF1 knockdown ameliorated pyroptosis markers; APE1 protein accumulation was observed in siABCA1 podocytes.
- APE1 redox inhibition and RELA knockdown reduced pyroptosis priming; in vivo studies confirmed increased APE1, IRF1, and caspase 11 in DKD glomeruli.
Conclusions:
- ABCA1 deficiency in podocytes leads to APE1 accumulation.
- APE1 accumulation promotes IRF1 and inflammasome gene expression, priming podocytes for pyroptosis.
- The APE1/IRF1/Caspase-1 axis is a key pathway in ABCA1-deficiency-induced pyroptosis in DKD.
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