Department of Cardiology, The First Affiliated Hospital of China Medical University.
Department of Cardiology, West China Hospital of Sichuan University.
Tohoku J Exp Med. 2018 Mar;244(3):177-186. doi: 10.1620/tjem.244.177.
The formation and conduction of electrocardiosignals and the synchronous contraction of atria and ventricles with rhythmicity are both triggered and regulated by the cardiac conduction system (CCS). Defect of this system will lead to various types of cardiac arrhythmias. In recent years, the research progress of molecular genetics and developmental biology revealed a clearer understanding of differentiation and development of the cardiac conduction system and their regulatory mechanisms. Short stature homeobox 2 (Shox2) transcription factor, encoded by Shox2 gene in the mouse, is crucial in the formation and differentiation of the sinoatrial node (SAN). Shox2 drives embryonic development processes and is widely expressed in the appendicular skeleton, palate, temporomandibular joints, and heart. Mutations of Shox2 can lead to dysembryoplasia and abnormal phenotypes, including bradycardiac arrhythmia. In this review, we provide a summary of the latest research progress on the regulatory effects of the Shox2 gene in differentiation and development processes of the cardiac conduction system, hoping to deepen the knowledge and understanding of this systematic process based on the cardiac conduction system. Overall, the Shox2 gene is intimately involved in the differentiation and development of cardiac conduction system, especially sinoatrial node. We also summarize the current information about human SHOX2. This review article provides a new direction in biological pacemaker therapies.
心电图信号的形成和传导以及心房和心室的同步收缩具有节律性,这两者都是由心脏传导系统(CCS)触发和调节的。该系统的缺陷会导致各种类型的心律失常。近年来,分子遗传学和发育生物学的研究进展揭示了人们对心脏传导系统的分化和发育及其调节机制有了更清晰的认识。短指同源盒 2(Shox2)转录因子由小鼠 Shox2 基因编码,在窦房结(SAN)的形成和分化中至关重要。Shox2 驱动胚胎发育过程,在附肢骨骼、腭、颞下颌关节和心脏中广泛表达。Shox2 的突变可导致发育不良和异常表型,包括心动过缓性心律失常。本综述总结了 Shox2 基因在心脏传导系统分化和发育过程中的调控作用的最新研究进展,希望能在心脏传导系统的基础上加深对这一系统过程的认识和理解。总的来说,Shox2 基因与心脏传导系统,特别是窦房结的分化和发育密切相关。我们还总结了目前关于人类 SHOX2 的信息。本文综述为生物起搏器治疗提供了新的方向。