Feng Yi, Desjardins Cody A, Cooper Olivia, Kontor Akuah, Nocco Sarah E, Naya Francisco J
Department of Biology, Program in Cell and Molecular Biology, Boston University, Boston, Massachusetts, United States of America.
PLoS One. 2015 May 26;10(5):e0127641. doi: 10.1371/journal.pone.0127641. eCollection 2015.
The myocyte enhancer factor 2 (MEF2) transcription factor requires interactions with co-factors for precise regulation of its target genes. Our lab previously reported that the mammalian MEF2A isoform regulates the cardiomyocyte costamere, a critical muscle-specific focal adhesion complex involved in contractility, through its transcriptional control of genes encoding proteins localized to this cytoskeletal structure. To further dissect the transcriptional mechanisms of costamere gene regulation and identify potential co-regulators of MEF2A, a bioinformatics analysis of transcription factor binding sites was performed using the proximal promoter regions of selected costamere genes. One of these predicted sites belongs to the early growth response (EGR) transcription factor family. The EGR1 isoform has been shown to be involved in a number of pathways in cardiovascular homeostasis and disease, making it an intriguing candidate MEF2 coregulator to further characterize. Here, we demonstrate that EGR1 interacts with MEF2A and is a potent and specific repressor of MEF2 transcriptional activity. Furthermore, we show that costamere gene expression in cardiomyocytes is dependent on EGR1 transcriptional activity. This study identifies a mechanism by which MEF2 activity can be modulated to ensure that costamere gene expression is maintained at levels commensurate with cardiomyocyte contractile activity.
肌细胞增强因子2(MEF2)转录因子需要与辅助因子相互作用,才能精确调控其靶基因。我们实验室之前报道,哺乳动物的MEF2A亚型通过对编码定位于这种细胞骨架结构的蛋白质的基因进行转录控制,来调节心肌细胞的肌联蛋白,这是一种参与收缩性的关键肌肉特异性粘着斑复合体。为了进一步剖析肌联蛋白基因调控的转录机制,并确定MEF2A潜在的共调节因子,我们使用选定的肌联蛋白基因的近端启动子区域对转录因子结合位点进行了生物信息学分析。这些预测位点之一属于早期生长反应(EGR)转录因子家族。EGR1亚型已被证明参与心血管稳态和疾病的多种途径,这使其成为一个有趣的候选MEF2共调节因子,有待进一步表征。在这里,我们证明EGR1与MEF2A相互作用,并且是MEF2转录活性的有效且特异性的抑制剂。此外,我们表明心肌细胞中肌联蛋白基因的表达依赖于EGR1的转录活性。这项研究确定了一种机制,通过该机制可以调节MEF2活性,以确保肌联蛋白基因表达维持在与心肌细胞收缩活性相称的水平。