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Knockdown of DNA methyltransferase 1 reduces DNA methylation and alters expression patterns of cardiac genes in embryonic cardiomyocytes

机译:DNA甲基转移酶1的敲低减少了DNA甲基化并改变了胚胎心肌细胞的心脏基因的表达模式

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摘要

We previously found that DNA methyltransferase 3a (DNMT3a) plays an important role in regulating embryonic cardiomyocyte gene expression, morphology, and function. In this study, we investigated the role of the most abundant DNMT in mammalian cells, DNMT1, in these processes. It is known that DNMT1 is essential for embryonic development, during which it is involved in regulating cardiomyocyte DNA methylation and gene expression. We used siRNA to knock down DNMT1 expression in primary cultures of mouse embryonic cardiomyocytes. Immunofluorescence staining and multielectrode array were, respectively, utilized to evaluate cardiomyocyte growth and electrophysiology. RNA sequencing (RNA‐Seq) and multiplex bisulfite sequencing were, respectively, performed to examine gene expression and promoter methylation. At 72 h post‐transfection, reduction of DNMT1 expression decreased the number and increased the size of embryonic cardiomyocytes. Beat frequency and the amplitude of field action potentials were decreased by DNMT1 siRNA. RNA‐Seq analysis identified 801 up‐regulated genes and 494 down‐regulated genes in the DNMT1 knockdown cells when compared to controls. Pathway analysis of the differentially expressed genes revealed pathways that were associated with cell death and survival, cell morphology, cardiac function, and cardiac disease. Alternative splicing analysis identified 929 differentially expressed exons, including 583 up‐regulated exons and 308 down‐regulated exons. Moreover, decreased methylation levels were found in the promoters of cardiac genes Myh6, Myh7, Myh7b, Tnnc1, Tnni3, Tnnt2, Nppa, Nppb, mef2c, mef2d, Camta2, Cdkn1A, and Cdkn1C. Of these 13 genes, 6 (Myh6, Tnnc1, Tnni3, Tnnt2, Nppa, Nppb) and 1 (Cdkn1C) had increased or decreased gene expression, respectively. Altogether, these data show that DNMT1 is important in embryonic cardiomyocytes by regulating DNA methylation, gene expression, gene splicing, and cell function.
机译:我们以前发现DNA甲基转移酶3a(dnmt3a)在调节胚胎心肌细胞基因表达,形态学和功能方面发挥着重要作用。在这项研究中,我们研究了这些过程中最丰富的DNMT在哺乳动物细胞DNMT1中的作用。众所周知,DNMT1对于胚胎发育至关重要,在此期间它参与调节心肌细胞DNA甲基化和基因表达。我们使用siRNA在小鼠胚胎心肌细胞的原发性培养中击退DNMT1表达。分别用于评估心肌细胞生长和电生理学的免疫荧光染色和多电极阵列。分别进行RNA测序(RNA-SEQ)和多重亚硫酸氢盐测序以检查基因表达和启动子甲基化。在转染后72小时,DNMT1表达的减少降低了数量并增加了胚胎心肌细胞的尺寸。 DNMT1 siRNA降低了拍频和场动作电位的幅度。与对照相比,RNA-SEQ分析确定了DNMT1敲低细胞中的801个上调基因和494个下调基因。差异表达基因的途径分析显示与细胞死亡和生存,细胞形态,心脏功能和心脏病相关的途径。替代剪接分析确定了929个差异表达的外显子,包括583个上调的外显子和308个下调的外显子。此外,在心脏基因MYH6,MYH7,MYH7B,TNNC1,TNNI3,TNNT2,NPPA,NPPB,MEF2C,MEF2D,CAMTA2,CDKN1A和CDKN1C中发现降低甲基化水平。在这13个基因中,6(MyH6,TNNC1,TNNI3,TNNT2,NPPA,NPPB)和1(CDKN1C)分别增加或降低了基因表达。总之,这些数据表明,通过调节DNA甲基化,基因表达,基因剪接和细胞功能,DNMT1在胚胎心肌细胞中是重要的。

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