A dual role for ErbB2 signaling in cardiac trabeculation
Author(s) -
Jiandong Liu,
Michael Bressan,
David Hassel,
Jan Huisken,
David Staudt,
Kazu Kikuchi,
Kenneth D. Poss,
Takashi Mikawa,
Didier Y. R. Stainier
Publication year - 2010
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.053736
Subject(s) - biology , zebrafish , cardiac function curve , microbiology and biotechnology , contractility , heart development , morphogenesis , cardiac cell , anatomy , mutant , cardiac muscle , medicine , endocrinology , heart failure , genetics , gene , embryonic stem cell
Cardiac trabeculation is a crucial morphogenetic process by which clusters of ventricular cardiomyocytes extrude and expand into the cardiac jelly to form sheet-like projections. Although it has been suggested that cardiac trabeculae enhance cardiac contractility and intra-ventricular conduction, their exact function in heart development has not been directly addressed. We found that in zebrafish erbb2 mutants, which we show completely lack cardiac trabeculae, cardiac function is significantly compromised, with mutant hearts exhibiting decreased fractional shortening and an immature conduction pattern. To begin to elucidate the cellular mechanisms of ErbB2 function in cardiac trabeculation, we analyzed erbb2 mutant hearts more closely and found that loss of ErbB2 activity resulted in a complete absence of cardiomyocyte proliferation during trabeculation stages. In addition, based on data obtained from proliferation, lineage tracing and transplantation studies, we propose that cardiac trabeculation is initiated by directional cardiomyocyte migration rather than oriented cell division, and that ErbB2 cell-autonomously regulates this process.
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