Histone demethylase KDM5 regulates cardiomyocyte maturation by promoting fatty acid oxidation, oxidative phosphorylation, and myofibrillar organization

被引:8
作者
Deogharia, Manisha [1 ]
Venegas-Zamora, Leslye [2 ]
Agrawal, Akanksha [2 ]
Shi, Miusi [3 ]
Jain, Abhinav K. [4 ]
McHugh, Kevin J. [3 ,5 ]
Altamirano, Francisco [2 ,6 ]
Marian, Ali J. [1 ]
Gurha, Priyatansh [1 ]
机构
[1] Univ Texas Hlth Sci Ctr Houston, Inst Mol Med, Ctr Cardiovasc Genet, 6770 Bertner St,C950G, Houston, TX 77030 USA
[2] Houston Methodist Res Inst, Dept Cardiovasc Sci, 6670 Bertner Ave, Houston, TX 77030 USA
[3] Rice Univ, Dept Bioengn, 6500 Main St, Houston, TX 77030 USA
[4] Univ Texas MD Anderson Canc Ctr, Ctr Canc Epigenet, Dept Epigenet & Mol Carcinogenesis, 1515 Holcombe Blvd, Houston, TX 77030 USA
[5] Rice Univ, Dept Chem, 6500 Main St, Houston, TX 77030 USA
[6] Cornell Univ, Weill Cornell Med Coll, Dept Cardiothorac Surg, Ithaca, NY USA
关键词
iPSC-cardiomyocytes; Epigenetics; KDM5; Histone modification; GENE-EXPRESSION; METHYLATION; SUPPRESSION; METABOLISM; RENEWAL;
D O I
10.1093/cvr/cvae014
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims Human pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) provide a platform to identify and characterize factors that regulate the maturation of CMs. The transition from an immature foetal to an adult CM state entails coordinated regulation of the expression of genes involved in myofibril formation and oxidative phosphorylation (OXPHOS) among others. Lysine demethylase 5 (KDM5) specifically demethylates H3K4me1/2/3 and has emerged as potential regulators of expression of genes involved in cardiac development and mitochondrial function. The purpose of this study is to determine the role of KDM5 in iPSC-CM maturation.Methods and results KDM5A, B, and C proteins were mainly expressed in the early post-natal stages, and their expressions were progressively downregulated in the post-natal CMs and were absent in adult hearts and CMs. In contrast, KDM5 proteins were persistently expressed in the iPSC-CMs up to 60 days after the induction of myogenic differentiation, consistent with the immaturity of these cells. Inhibition of KDM5 by KDM5-C70 -a pan-KDM5 inhibitor, induced differential expression of 2372 genes, including upregulation of genes involved in fatty acid oxidation (FAO), OXPHOS, and myogenesis in the iPSC-CMs. Likewise, genome-wide profiling of H3K4me3 binding sites by the cleavage under targets and release using nuclease assay showed enriched of the H3K4me3 peaks at the promoter regions of genes encoding FAO, OXPHOS, and sarcomere proteins. Consistent with the chromatin and gene expression data, KDM5 inhibition increased the expression of multiple sarcomere proteins and enhanced myofibrillar organization. Furthermore, inhibition of KDM5 increased H3K4me3 deposits at the promoter region of the ESRRA gene and increased its RNA and protein levels. Knockdown of ESRRA in KDM5-C70-treated iPSC-CM suppressed expression of a subset of the KDM5 targets. In conjunction with changes in gene expression, KDM5 inhibition increased oxygen consumption rate and contractility in iPSC-CMs.Conclusion KDM5 inhibition enhances maturation of iPSC-CMs by epigenetically upregulating the expressions of OXPHOS, FAO, and sarcomere genes and enhancing myofibril organization and mitochondrial function. Graphical Abstract The figure was generated using BioRender.com.
引用
收藏
页码:630 / 643
页数:14
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