Harris John P, Bhakta Minoti, Bezprozvannaya Svetlana, Wang Lin, Lubczyk Christina, Olson Eric N, Munshi Nikhil V
Department of Internal Medicine (Cardiology Division), UT Southwestern Medical Center, Dallas, Texas, USA.
Department of Molecular Biology, UT Southwestern Medical Center, Dallas, Texas, USA.
Mol Cell Biol. 2015 Feb;35(4):649-61. doi: 10.1128/MCB.00860-14. Epub 2014 Dec 8.
The cardiac conduction system coordinates electrical activation through a series of interconnected structures, including the atrioventricular node (AVN), the central connection point that delays impulse propagation to optimize cardiac performance. Although recent studies have uncovered important molecular details of AVN formation, relatively little is known about the transcriptional mechanisms that regulate AV delay, the primary function of the mature AVN. We identify here MyoR as a novel transcription factor expressed in Cx30.2(+) cells of the AVN. We show that MyoR specifically inhibits a Cx30.2 enhancer required for AVN-specific gene expression. Furthermore, we demonstrate that MyoR interacts directly with Gata4 to mediate transcriptional repression. Our studies reveal that MyoR contains two nonequivalent repression domains. While the MyoR C-terminal repression domain inhibits transcription in a context-dependent manner, the N-terminal repression domain can function in a heterologous context to convert the Hand2 activator into a repressor. In addition, we show that genetic deletion of MyoR in mice increases Cx30.2 expression by 50% and prolongs AV delay by 13%. Taken together, we conclude that MyoR modulates a Gata4-dependent regulatory circuit that establishes proper AV delay, and these findings may have wider implications for the variability of cardiac rhythm observed in the general population.
心脏传导系统通过一系列相互连接的结构来协调电激活,这些结构包括房室结(AVN),它是延迟冲动传播以优化心脏功能的中央连接点。尽管最近的研究揭示了房室结形成的重要分子细节,但对于调节房室延迟(成熟房室结的主要功能)的转录机制却知之甚少。我们在此鉴定出MyoR是一种在房室结的Cx30.2(+)细胞中表达的新型转录因子。我们表明,MyoR特异性抑制房室结特异性基因表达所需的Cx30.2增强子。此外,我们证明MyoR直接与Gata4相互作用以介导转录抑制。我们的研究表明,MyoR包含两个不等效的抑制结构域。虽然MyoR的C末端抑制结构域以上下文依赖的方式抑制转录,但N末端抑制结构域可以在异源环境中发挥作用,将Hand2激活剂转化为抑制剂。此外,我们表明,在小鼠中基因删除MyoR会使Cx30.2表达增加50%,并使房室延迟延长13%。综上所述,我们得出结论,MyoR调节一个依赖Gata4的调节回路,该回路建立适当的房室延迟,这些发现可能对普通人群中观察到的心律变异性具有更广泛的意义。