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首页> 外文期刊>The journal of clinical investigation >Genetic variation in T-box binding element functionally affects SCN5A/SCN10A enhancer
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Genetic variation in T-box binding element functionally affects SCN5A/SCN10A enhancer

机译:T-box结合元件的遗传变异在功能上影响SCN5A / SCN10A增强子

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The contraction pattern of the heart relies on the activation and conduction of the electrical impulse. Perturbations of cardiac conduction have been associated with congenital and acquired arrhythmias as well as cardiac arrest. The pattern of conduction depends on the regulation of heterogeneous gene expression by key transcription factors and transcriptional enhancers. Here, we assessed the genome-wide occupation of conduction system–regulating transcription factors TBX3, NKX2-5, and GATA4 and of enhancer-associated coactivator p300 in the mouse heart, uncovering cardiac enhancers throughout the genome. Many of the enhancers colocalized with ion channel genes repressed by TBX3, including the clustered sodium channel genes Scn5a , essential for cardiac function, and Scn10a . We identified 2 enhancers in the Scn5a / Scn10a locus, which were regulated by TBX3 and its family member and activator, TBX5, and are functionally conserved in humans. We also provided evidence that a SNP in the SCN10A enhancer associated with alterations in cardiac conduction patterns in humans disrupts TBX3/TBX5 binding and reduces the cardiac activity of the enhancer in vivo. Thus, the identification of key regulatory elements for cardiac conduction helps to explain how genetic variants in noncoding regulatory DNA sequences influence the regulation of cardiac conduction and the predisposition for cardiac arrhythmias.
机译:心脏的收缩方式取决于电脉冲的激活和传导。心脏传导的扰动与先天性和后天性心律不齐以及心脏骤停有关。传导方式取决于关键转录因子和转录增强子对异源基因表达的调节。在这里,我们评估了小鼠心脏中传导系统的全基因组调控调节转录因子TBX3,NKX2-5和GATA4以及增强子相关的共激活因子p300,发现了整个基因组中的心脏增强子。许多增强子与TBX3抑制的离子通道基因共定位,包括成簇的钠通道基因Scn5a(对心脏功能至关重要)和Scn10a。我们在Scn5a / Scn10a基因座中鉴定了2种增强子,这些增强子受TBX3及其家族成员和激活物TBX5调控,在人类中功能保守。我们还提供了证据,表明与人类心脏传导模式改变相关的SCN10A增强剂中的SNP破坏了TBX3 / TBX5的结合并降低了增强剂在体内的心脏活性。因此,确定心脏传导的关键调控元件有助于解释非编码调控DNA序列中的遗传变异如何影响心脏传导的调控和心律失常的易感性。

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