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KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy.

Publication ,  Journal Article
Kyriazis, ID; Hoffman, M; Gaignebet, L; Lucchese, AM; Markopoulou, E; Palioura, D; Wang, C; Bannister, TD; Christofidou-Solomidou, M; Oka, S-I ...
Published in: Circ Res
February 5, 2021

RATIONALE: Diabetic cardiomyopathy (DbCM) is a major complication in type-1 diabetes, accompanied by altered cardiac energetics, impaired mitochondrial function, and oxidative stress. Previous studies indicate that type-1 diabetes is associated with increased cardiac expression of KLF5 (Krüppel-like factor-5) and PPARα (peroxisome proliferator-activated receptor) that regulate cardiac lipid metabolism. OBJECTIVE: In this study, we investigated the involvement of KLF5 in DbCM and its transcriptional regulation. METHODS AND RESULTS: KLF5 mRNA levels were assessed in isolated cardiomyocytes from cardiovascular patients with diabetes and were higher compared with nondiabetic individuals. Analyses in human cells and diabetic mice with cardiomyocyte-specific FOXO1 (Forkhead box protein O1) deletion showed that FOXO1 bound directly on the KLF5 promoter and increased KLF5 expression. Diabetic mice with cardiomyocyte-specific FOXO1 deletion had lower cardiac KLF5 expression and were protected from DbCM. Genetic, pharmacological gain and loss of KLF5 function approaches and AAV (adeno-associated virus)-mediated Klf5 delivery in mice showed that KLF5 induces DbCM. Accordingly, the protective effect of cardiomyocyte FOXO1 ablation in DbCM was abolished when KLF5 expression was rescued. Similarly, constitutive cardiomyocyte-specific KLF5 overexpression caused cardiac dysfunction. KLF5 caused oxidative stress via direct binding on NADPH oxidase (NOX)4 promoter and induction of NOX4 (NADPH oxidase 4) expression. This was accompanied by accumulation of cardiac ceramides. Pharmacological or genetic KLF5 inhibition alleviated superoxide formation, prevented ceramide accumulation, and improved cardiac function in diabetic mice. CONCLUSIONS: Diabetes-mediated activation of cardiomyocyte FOXO1 increases KLF5 expression, which stimulates NOX4 expression, ceramide accumulation, and causes DbCM.

Duke Scholars

Published In

Circ Res

DOI

EISSN

1524-4571

Publication Date

February 5, 2021

Volume

128

Issue

3

Start / End Page

335 / 357

Location

United States

Related Subject Headings

  • Transcription, Genetic
  • PPAR alpha
  • Oxidative Stress
  • Myocytes, Cardiac
  • Middle Aged
  • Mice, Knockout
  • Mice, Inbred C57BL
  • Mice
  • Male
  • Kruppel-Like Transcription Factors
 

Citation

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Chicago
ICMJE
MLA
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Kyriazis, I. D., Hoffman, M., Gaignebet, L., Lucchese, A. M., Markopoulou, E., Palioura, D., … Drosatos, K. (2021). KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy. Circ Res, 128(3), 335–357. https://doi.org/10.1161/CIRCRESAHA.120.316738
Kyriazis, Ioannis D., Matthew Hoffman, Lea Gaignebet, Anna Maria Lucchese, Eftychia Markopoulou, Dimitra Palioura, Chao Wang, et al. “KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy.Circ Res 128, no. 3 (February 5, 2021): 335–57. https://doi.org/10.1161/CIRCRESAHA.120.316738.
Kyriazis ID, Hoffman M, Gaignebet L, Lucchese AM, Markopoulou E, Palioura D, et al. KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy. Circ Res. 2021 Feb 5;128(3):335–57.
Kyriazis, Ioannis D., et al. “KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy.Circ Res, vol. 128, no. 3, Feb. 2021, pp. 335–57. Pubmed, doi:10.1161/CIRCRESAHA.120.316738.
Kyriazis ID, Hoffman M, Gaignebet L, Lucchese AM, Markopoulou E, Palioura D, Wang C, Bannister TD, Christofidou-Solomidou M, Oka S-I, Sadoshima J, Koch WJ, Goldberg IJ, Yang VW, Bialkowska AB, Kararigas G, Drosatos K. KLF5 Is Induced by FOXO1 and Causes Oxidative Stress and Diabetic Cardiomyopathy. Circ Res. 2021 Feb 5;128(3):335–357.

Published In

Circ Res

DOI

EISSN

1524-4571

Publication Date

February 5, 2021

Volume

128

Issue

3

Start / End Page

335 / 357

Location

United States

Related Subject Headings

  • Transcription, Genetic
  • PPAR alpha
  • Oxidative Stress
  • Myocytes, Cardiac
  • Middle Aged
  • Mice, Knockout
  • Mice, Inbred C57BL
  • Mice
  • Male
  • Kruppel-Like Transcription Factors