Institute of Cardiovascular and Metabolic Research, School of Biological Sciences, University of Reading, Whiteknights, UK.
Biochem J. 2012 Jun 1;444(2):343-55. doi: 10.1042/BJ20120125.
Endothelin-1 promotes cardiomyocyte hypertrophy by inducing changes in gene expression. Immediate early genes including Atf3 (activating transcription factor 3), Egr1 (early growth response 1) and Ptgs2 (prostaglandin-endoperoxide synthase 2) are rapidly and transiently up-regulated by endothelin-1 in cardiomyocytes. Atf3 regulates the expression of downstream genes and is implicated in negative feedback regulation of other immediate early genes. To identify Atf3-regulated genes, we knocked down Atf3 expression in cardiomyocytes exposed to endothelin-1 and used microarrays to interrogate the transcriptomic effects. The expression of 23 mRNAs (including Egr1 and Ptgs2) was enhanced and the expression of 25 mRNAs was inhibited by Atf3 knockdown. Using quantitative PCR, we determined that knockdown of Atf3 had little effect on up-regulation of Egr1 mRNA over 30 min, but abolished the subsequent decline, causing sustained Egr1 mRNA expression and enhanced protein expression. This resulted from direct binding of Atf3 to the Egr1 promoter. Mathematical modelling established that Atf3 can suffice to suppress Egr1 expression. Given the widespread co-regulation of Atf3 with Egr1, we suggest that the Atf3-Egr1 negative feedback loop is of general significance. Loss of Atf3 caused abnormal cardiomyocyte growth, presumably resulting from the dysregulation of target genes. The results of the present study therefore identify Atf3 as a nexus in cardiomyocyte hypertrophy required to facilitate the full and proper growth response.
内皮素-1 通过诱导基因表达的变化促进心肌细胞肥大。瞬时早期基因,包括 Atf3(激活转录因子 3)、Egr1(早期生长反应 1)和 Ptgs2(前列腺素内过氧化物合酶 2),在内皮素-1 作用于心肌细胞时迅速而短暂地上调。Atf3 调节下游基因的表达,并涉及其他瞬时早期基因的负反馈调节。为了鉴定 Atf3 调节的基因,我们敲低了暴露于内皮素-1的心肌细胞中的 Atf3 表达,并使用微阵列来检测转录组效应。Atf3 敲低后,23 个 mRNA(包括 Egr1 和 Ptgs2)的表达增强,25 个 mRNA 的表达受到抑制。通过定量 PCR,我们确定 Atf3 敲低对 Egr1 mRNA 在 30 分钟内的上调几乎没有影响,但会消除随后的下降,导致 Egr1 mRNA 的持续表达和蛋白表达增强。这是由于 Atf3 直接结合到 Egr1 启动子上。数学模型建立了 Atf3 足以抑制 Egr1 表达。鉴于 Atf3 与 Egr1 的广泛共调节,我们认为 Atf3-Egr1 负反馈环具有普遍意义。Atf3 的缺失导致心肌细胞生长异常,可能是由于靶基因的失调所致。因此,本研究的结果确定了 Atf3 是心肌细胞肥大所必需的枢纽,以促进充分和适当的生长反应。