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Transcriptional Patterning of the Ventricular Cardiac Conduction System.
Burnicka-Turek, Ozanna; Broman, Michael T; Steimle, Jeffrey D; Boukens, Bastiaan J; Petrenko, Nataliya B; Ikegami, Kohta; Nadadur, Rangarajan D; Qiao, Yun; Arnolds, David E; Yang, Xinan H; Patel, Vickas V; Nobrega, Marcelo A; Efimov, Igor R; Moskowitz, Ivan P.
Afiliação
  • Burnicka-Turek O; From the Department of Pediatrics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Broman MT; Department of Pathology (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Steimle JD; Department of Human Genetics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., M.A.N., I.P.M.), University of Chicago, Chicago, IL.
  • Boukens BJ; Department of Medicine (M.T.B.), University of Chicago, Chicago, IL.
  • Petrenko NB; From the Department of Pediatrics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Ikegami K; Department of Pathology (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Nadadur RD; Department of Human Genetics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., M.A.N., I.P.M.), University of Chicago, Chicago, IL.
  • Qiao Y; Department of Biomedical Engineering, George Washington University, Washington, DC (B.J.B., Y.Q., I.R.E.).
  • Arnolds DE; Department of Medical Biology, Academic Medical Center, University of Amsterdam, Amsterdam, the Netherlands (B.J.B.).
  • Yang XH; Department of Medicine, Perelman School of Medicine, University of Pennsylvania, Penn Cardiovascular Institute, Philadelphia (N.B.P.).
  • Patel VV; From the Department of Pediatrics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Nobrega MA; Department of Pathology (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
  • Efimov IR; Department of Human Genetics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., M.A.N., I.P.M.), University of Chicago, Chicago, IL.
  • Moskowitz IP; From the Department of Pediatrics (O.B.-T., J.D.S., K.I., R.D.N., D.E.A., X.H.Y., I.P.M.), University of Chicago, Chicago, IL.
Circ Res ; 127(3): e94-e106, 2020 07 17.
Article em En | MEDLINE | ID: mdl-32290757
ABSTRACT
RATIONALE The heartbeat is organized by the cardiac conduction system (CCS), a specialized network of cardiomyocytes. Patterning of the CCS into atrial node versus ventricular conduction system (VCS) components with distinct physiology is essential for the normal heartbeat. Distinct node versus VCS physiology has been recognized for more than a century, but the molecular basis of this regional patterning is not well understood.

OBJECTIVE:

To study the genetic and genomic mechanisms underlying node versus VCS distinction and investigate rhythm consequences of failed VCS patterning. METHODS AND

RESULTS:

Using mouse genetics, we found that the balance between T-box transcriptional activator, Tbx5, and T-box transcriptional repressor, Tbx3, determined the molecular and functional output of VCS myocytes. Adult VCS-specific removal of Tbx5 or overexpression of Tbx3 re-patterned the fast VCS into slow, nodal-like cells based on molecular and functional criteria. In these cases, gene expression profiling showed diminished expression of genes required for VCS-specific fast conduction but maintenance of expression of genes required for nodal slow conduction physiology. Action potentials of Tbx5-deficient VCS myocytes adopted nodal-specific characteristics, including increased action potential duration and cellular automaticity. Removal of Tbx5 in vivo precipitated inappropriate depolarizations in the atrioventricular (His)-bundle associated with lethal ventricular arrhythmias. TBX5 bound and directly activated cis-regulatory elements at fast conduction channel genes required for fast physiological characteristics of the VCS action potential, defining the identity of the adult VCS.

CONCLUSIONS:

The CCS is patterned entirely as a slow, nodal ground state, with a T-box dependent, physiologically dominant, fast conduction network driven specifically in the VCS. Disruption of the fast VCS gene regulatory network allowed nodal physiology to emerge, providing a plausible molecular mechanism for some lethal ventricular arrhythmias.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Arritmias Cardíacas / Nó Atrioventricular / Transcrição Gênica / Proteínas com Domínio T / Ventrículos do Coração Limite: Animals / Female / Humans / Male Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Arritmias Cardíacas / Nó Atrioventricular / Transcrição Gênica / Proteínas com Domínio T / Ventrículos do Coração Limite: Animals / Female / Humans / Male Idioma: En Ano de publicação: 2020 Tipo de documento: Article