Spironolactone Rescues Dot1a-Af9-Mediated Repression of Endothelin-1 and Improves Kidney Injury in Streptozotocin-Induced Diabetic Rats
Spironolactone Rescues Dot1a-Af9-Mediated Repression of Endothelin-1 and Improves Kidney Injury in Streptozotocin-Induced Diabetic Rats
The molecular mechanism linking aldosterone and endothelin-1 in the development of diabetic nephropathy has not been completely elucidated. Here, we provide evidence showing that streptozotocin-induced diabetic rats have significantly increased aldosterone and endothelin-1 in the kidney tissue and markedly decreased expression of Dot1a and Af9. Blocking aldosterone with spironolactone significantly reduced proteinuria, glomerulosclerosis, tubulointerstitial injury and endothelin-1 expression, and significantly increased Dot1a and Af9 expression. Increasing Dot1a and Af9 expression by spironolactone or by stable transfection led to impaired endothelin-1 expression in NRK-52 cells. In contrast, downregulation of Dot1a and Af9 by aldosterone in NRK-52E cells caused upregulation of endothelin-1. Genetic inactivation of Dot1l, which encodes Dot1a, in Aqp2-expressing principal cells of mouse kidney impaired association of Dot1a and H3 dimethyl K79 with the specific subregions of endothelin-1 promoter, and upregulates endothelin-1 mRNA and protein expression. Our data suggest that Dot1a and Af9 repress endothelin-1 in vitro and in vivo. Excessive aldosterone induces kidney injury, in part possibly by downregulating Dot1a and Af9, and thus relieving Dot1a-Af9-mediated repression to increase endothelin-1 transcription. Spironolactone ameliorates kidney injury in Streptozotocin-induced diabetic rats, possibly by restoring Dot1a-Af9-mediated repression to reduce endothelin-1 expression. Therefore, Dot1a and Af9 as aldosterone-downregulated targets are negative regulators of endothelin-1 transcription in vitro and in vivo, and may be considered as new potential therapeutic targets of kidney injury in diabetes.
- Central South University
- The University of Texas at Austin United States
- The University of Texas System United States
- Central South University China (People's Republic of)
- The University of Texas Health Science Center at Houston United States
Science, Down-Regulation, Spironolactone, Streptozocin, Diabetes Mellitus, Experimental, Mice, Animals, Humans, Diabetic Nephropathies, Promoter Regions, Genetic, Aldosterone, Endothelin-1, Q, R, Nuclear Proteins, Histone-Lysine N-Methyltransferase, Methyltransferases, Acute Kidney Injury, Rats, Up-Regulation, Medicine, Research Article
Science, Down-Regulation, Spironolactone, Streptozocin, Diabetes Mellitus, Experimental, Mice, Animals, Humans, Diabetic Nephropathies, Promoter Regions, Genetic, Aldosterone, Endothelin-1, Q, R, Nuclear Proteins, Histone-Lysine N-Methyltransferase, Methyltransferases, Acute Kidney Injury, Rats, Up-Regulation, Medicine, Research Article
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