4.8 Article

Kruppel-like factor 4 is critical for transcriptional control of cardiac mitochondria! homeostasis

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 125, 期 9, 页码 3461-3476

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI79964

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资金

  1. American Heart Association Established Investigator Award
  2. American Heart Association [12SDG12070077, 12SDG12050558]
  3. NIH [R01HL058493, R01HL110630-01, R01HL112486, R01HL086548, R01-HL119195, T32HL105338, F32HL110538]

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Mitochondrial homeostasis is critical for tissue health, and mitochondrial dysfunction contributes to numerous diseases, including heart failure. Here, we have shown that the transcription factor Kruppel-like factor 4 (KLF4) governs mitochondrial biogenesis, metabolic function, dynamics, and autophagic clearance. Adult mice with cardiac-specific Klf4 deficiency developed cardiac dysfunction with aging or in response to pressure overload that was characterized by reduced myocardial ATP levels, elevated ROS, and marked alterations in mitochondrial shape, size, ultrastructure, and alignment. Evaluation of mitochondria isolated from KLF4-deficient hearts revealed a reduced respiration rate that is likely due to defects in electron transport chain complex I. Further, cardiac-specific, embryonic Klf4 deletion resulted in postnatal premature mortality, impaired mitochondrial biogenesis, and altered mitochondrial maturation. We determined that KLF4 binds to, cooperates with, and is requisite for optimal function of the estrogen-related receptor/PPAR gamma coactivator 1 (ERR/PGC-1) transcriptional regulatory module on metabolic and mitochondrial targets. Finally, we found that KLF4 regulates autophagy flux through transcriptional regulation of a broad array of autophagy genes in cardiomyocytes. Collectively, these findings identify KLF4 as a nodal transcriptional regulator of mitochondria! homeostasis.

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