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February 4, 2010Circulation Research301 citations

Development of the Pacemaker Tissues of the Heart

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VCVincent M. ChristoffelsGSGertien J. SmitsAKAndreas Kispert

Key Result

This review summarizes the cellular origin and molecular control of differentiation and morphogenesis of the pacemaker tissues of the heart.

Key Points

  • To summarize current experimental findings on the cellular origins, transcriptional regulation, and morphogenesis of cardiac pacemaker and conduction system tissues.
  • Reviewed experimental evidence tracking embryonic myocyte differentiation into working myocardium versus specialized conduction system tissue.
  • Analyzed molecular mechanisms and transcriptional repressor pathways governing sinus node and atrioventricular node specification.
  • Pacemaker tissues, including the sinus node and atrioventricular node, develop through highly localized suppression of working muscle differentiation within early embryonic myocytes.
  • Specific transcriptional repressors mediate this developmental restriction, preventing nodal precursors from acquiring working myocardium characteristics and explaining the etiology of nodal dysfunctions.

PICO

P
Population
Pacemaker and conduction tissue development and dysfunction

Abstract

Pacemaker and conduction system myocytes play crucial roles in initiating and regulating the contraction of the cardiac chambers. Genetic defects, acquired diseases, and aging cause dysfunction of the pacemaker and conduction tissues, emphasizing the clinical necessity to understand the molecular and cellular mechanisms of their development and homeostasis. Although all cardiac myocytes of the developing heart initially possess pacemaker properties, the majority differentiates into working myocardium. Only small populations of embryonic myocytes will form the sinus node and the atrioventricular node and bundle. Recent efforts have revealed that the development of these nodal regions is achieved by highly localized suppression of working muscle differentiation, and have identified transcriptional repressors that mediate this process. This review will summarize and reflect new experimental findings on the cellular origin and the molecular control of differentiation and morphogenesis of the pacemaker tissues of the heart. It will also shed light on the etiology of inborn and acquired errors of nodal tissues.

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Christoffels et al. (2010) conducted a review in Pacemaker and conduction tissue development and dysfunction. This review summarizes the cellular origin and molecular control of differentiation and morphogenesis of the pacemaker tissues of the heart.

synapsesocial.com/papers/6a11dd453e1890633cb4dc42https://doi.org/10.1161/circresaha.109.205419
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