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Targeting the CDA1/CDA1BP1 Axis Retards Renal Fibrosis in Experimental Diabetic Nephropathy
Zhonglin Chai1, Tieqiao Wu2, Aozhi Dai2
1Department of Diabetes, Central Clinical School, Monash University, Melbourne, Victoria, Australia zhonglin.chai@monash.edu.
Abstract:
Targeting cell division autoantigen 1 (CDA1) is postulated to attenuate the profibrotic actions of transforming growth factor-β in diabetic nephropathy. This study has identified a regulatory protein for CDA1 and has then used genetic and pharmacological approaches to test in vivo whether strategies to target this pathway would lead to reduced renal injury. A novel protein, named CDA1BP1 (CDA1 binding protein 1), was identified as critical in regulating the profibrotic activity of CDA1. Genetic deletion of CDA1BP1 attenuated key parameters of renal fibrosis in diabetic mice. Furthermore, a series of short synthetic CDA1BP1 peptides competitively inhibited CDA1-CDA1BP1 binding in vitro with a hybrid peptide, CHA-050, containing a 12mer CDA1BP1 peptide and a previously known "cell-penetrating peptide," dose-dependently reducing expression of collagens I and III in HK-2 cells. In vivo, a d-amino acid retro-inverso peptide, CHA-061, significantly attenuated diabetes-associated increases in the renal expression of genes involved in fibrotic and proinflammatory pathways. In a delayed intervention study, CHA-061 treatment reversed diabetes-associated molecular and pathological changes within the kidney. Specifically, CHA-061 significantly attenuated renal extracellular matrix accumulation and glomerular injury. Taken together, targeting the CDA1/CDA1BP1 axis is a safe, efficacious, and feasible approach to retard experimental diabetic nephropathy.
Insights
Targeting the CDA1/CDA1BP1 pathway shows promise for diabetic nephropathy. Inhibiting CDA1BP1 with peptide CHA-061 reduced kidney fibrosis and injury in diabetic mice.
Area of Science:
- Nephrology
- Molecular Biology
- Pharmacology
Background:
- Diabetic nephropathy is characterized by renal fibrosis.
- Transforming growth factor-β (TGF-β) signaling drives fibrosis.
- Cell division autoantigen 1 (CDA1) is implicated in TGF-β profibrotic actions.
Purpose of the Study:
- To identify regulators of CDA1's profibrotic activity.
- To test the therapeutic potential of targeting the CDA1 pathway in diabetic nephropathy.
Main Methods:
- Identified CDA1 binding protein 1 (CDA1BP1) as a novel regulator of CDA1.
- Utilized genetic deletion of CDA1BP1 in a mouse model of diabetic nephropathy.
- Developed and tested synthetic CDA1BP1 peptides (CHA-050, CHA-061) in vitro and in vivo.
Main Results:
- Genetic deletion of CDA1BP1 attenuated renal fibrosis markers.
- Peptide CHA-050 reduced collagen expression in HK-2 cells.
- Peptide CHA-061 significantly reduced pro-fibrotic and pro-inflammatory gene expression in diabetic mice.
- CHA-061 treatment reversed established renal fibrosis and glomerular injury.
Conclusions:
- The CDA1/CDA1BP1 axis is a critical regulator of diabetic kidney disease.
- Targeting CDA1BP1 with peptides like CHA-061 is a viable therapeutic strategy.
- CDA1BP1 inhibition offers a safe and effective approach to retard diabetic nephropathy progression.
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