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The enigmatic role of the ankyrin repeat domain 1 gene in heart development and disease

机译:锚蛋白重复域1基因在心脏发育和疾病中的神秘作用

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It has been proposed that the ankyrin repeat domain 1 (ANKRD1) factor (also known as CARP) plays a critical role in transcriptional regulation, myofibrillar assembly and stretch sensing during heart development and cardiac insults. ANKRD1/CARP has also been reported to negatively regulate cardiac gene expression in cell-based promoter-reporter assays. Consequently, rapid up-regulation of the ankrd1 gene in myocardium in response to developmental stimuli or pathological insults has tended to be interpreted in the context of the inhibitory effects of ANKRD1 on cardiomyocyte gene expression. Surprisingly, a total ankrd1 knockout resulted in a complete lack of phenotype, suggesting that ANKRD1/CARP is not crucial for regulation of cardiac gene expression in vivo. In this essay, we summarize (1) the accumulated evidence for the apparent multifunctional properties of this enigmatic protein, (2) the distinct chamber-dependent regulation of ankrd1 expression patterns in the heart, both during development and cardiac injury, and (3) ANKRD1 involvement in networks regulating adaptation of the myocardium to stress. Whenever feasible, we present the results obtained in patients together with those obtained in the relevant animal and cellular models. A close examination of the findings still fails to define ANKRD1 as a negative regulator of cardiac gene expression in vivo, but rather indicates that its augmented expression can represent an adaptive response of the myocardium to stress both during development and various heart insults.
机译:已经提出,锚蛋白重复结构域1(ANKRD1)因子(也称为CARP)在心脏发育和心脏损伤过程中在转录调节,肌原纤维组装和拉伸感测中起关键作用。在基于细胞的启动子-报告检测中,ANKRD1 / CARP还被报道对心脏基因表达产生负调控。因此,倾向于ANKRD1对心肌细胞基因表达的抑制作用,可以解释心肌ankrd1基因响应发育刺激或病理损伤而迅速上调。出乎意料的是,总的ankrd1基因敲除导致表型的完全缺乏,这表明ANKRD1 / CARP对体内心脏基因表达的调节不是至关重要的。在本文中,我们总结了(1)这种神秘蛋白的明显多功能特性的累积证据;(2)在发育和心脏损伤期间,心脏中ankrd1表达模式的独特的腔室依赖性调节;以及(3) ANKRD1参与调节心肌适应压力的网络。只要可行,我们都会介绍在患者中获得的结果以及在相关动物和细胞模型中获得的结果。对发现的仔细检查仍然不能将ANKRD1定义为体内心脏基因表达的负调节剂,而是表明其增强表达可以代表心肌在发育过程中和各种心脏损伤中对应激的适应性反应。

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