IBR   13079
INSTITUTO DE BIOLOGIA MOLECULAR Y CELULAR DE ROSARIO
Unidad Ejecutora - UE
artículos
Título:
Morphogenetic control of zebrafish cardiac looping by Bmp signaling
Autor/es:
MOGHTADAEI, MOTAHAREH; LOMBARDO, VERÓNICA A.; ABDELILAH-SEYFRIED, SALIM; BORNHORST, DOROTHEE; HEISE, MELINA; MÄNNER, JÖRG
Revista:
DEVELOPMENT
Editorial:
COMPANY OF BIOLOGISTS LTD
Referencias:
Lugar: Cambridge; Año: 2019
ISSN:
0950-1991
Resumen:
Cardiac looping is an essential and highly conserved morphogenetic process that places the different regions of the developing vertebrate heart tube into proximity of their final topographical positions. High-resolution 4D live imaging of mosaically-labelled cardiomyocytes reveals distinct cardiomyocyte behaviors that contribute to the deformation of the entire heart tube. Cardiomyocytes acquire conical cell shapes, which is most pronounced at the superior wall of the atrioventricular canal and contributes to S-shaped bending. Torsional deformation close to the outflow tract contributes to a torque-like winding of the entire heart tube between its two poles. Anisotropic growth of cardiomyocytes based on their positions reinforces S-shaping of the heart. During cardiac looping, Bone morphogenetic protein pathway signaling is strongest at the future superior wall of the atrioventricular canal. Upon pharmacological or genetic inhibition of Bone morphogenetic protein signalling, myocardial cells at the superior wall of the atrioventricular canal maintain cuboidal cell shapes and S-shaped bending is impaired. This inventory of cellular rearrangements and cardiac looping regulation may also be relevant for understanding the etiology of human congenital heart defects.