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  Genetic and physiologic dissection of the vertebrate cardiac conduction system

Chi, N. C., Shaw, R. M., Jungblut, B., Huisken, J., Ferrer, T., Arnaout, R., et al. (2008). Genetic and physiologic dissection of the vertebrate cardiac conduction system. PLoS Biology, 6(5), 1006-1019. doi:10.1371/journal.pbio.0060109.

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Chi, N. C., Autor
Shaw, R. M., Autor
Jungblut, B., Autor
Huisken, J., Autor
Ferrer, T., Autor
Arnaout, R., Autor
Scott, I., Autor
Beis, D., Autor
Xiao, T., Autor
Baier, Herwig1, Autor           
Jan, L. Y., Autor
Tristani-Firouzi, M., Autor
Stainier, D. Y. R., Autor
Affiliations:
1University of California, San Francisco, U.S.A., ou_persistent22              

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Schlagwörter: mouse embryo heart cardiovascular-system purkinje-fibers zebrafish expression mutations reveals cells morphogenesis specification Biochemistry & Molecular Biology Life Sciences & Biomedicine - Other Topics
 Zusammenfassung: Vertebrate hearts depend on highly specialized cardiomyocytes that form the cardiac conduction system (CCS) to coordinate chamber contraction and drive blood efficiently and unidirectionally throughout the organism. Defects in this specialized wiring system can lead to syncope and sudden cardiac death. Thus, a greater understanding of cardiac conduction development may help to prevent these devastating clinical outcomes. Utilizing a cardiac-specific fluorescent calcium indicator zebrafish transgenic line, Tg(cmlc2:gCaMP)(s878), that allows for in vivo optical mapping analysis in intact animals, we identified and analyzed four distinct stages of cardiac conduction development that correspond to cellular and anatomical changes of the developing heart. Additionally, we observed that epigenetic factors, such as hemodynamic flow and contraction, regulate the fast conduction network of this specialized electrical system. To identify novel regulators of the CCS, we designed and performed a new, physiology-based, forward genetic screen and identified for the first time, to our knowledge, 17 conduction-specific mutations. Positional cloning of hobgoblin(s634) revealed that tcf2, a homeobox transcription factor gene involved in mature onset diabetes of the young and familial glomerulocystic kidney disease, also regulates conduction between the atrium and the ventricle. The combination of the Tg(cmlc2:gCaMP)(s878) line/in vivo optical mapping technique and characterization of cardiac conduction mutants provides a novel multidisciplinary approach to further understand the molecular determinants of the vertebrate CCS.

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Sprache(n): eng - English
 Datum: 2008
 Publikationsstatus: Erschienen
 Seiten: -
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: -
 Identifikatoren: Anderer: WOS:000256850100012
DOI: 10.1371/journal.pbio.0060109
ISSN: 1544-9173
 Art des Abschluß: -

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Titel: PLoS Biology
  Andere : PLoS Biol.
Genre der Quelle: Zeitschrift
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Affiliations:
Ort, Verlag, Ausgabe: San Francisco, California, US : Public Library of Science
Seiten: - Band / Heft: 6 (5) Artikelnummer: - Start- / Endseite: 1006 - 1019 Identifikator: ISSN: 1544-9173
CoNE: https://pure.mpg.de/cone/journals/resource/111056649444170