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Biology subjects

Bernheim, S.

Publications and source records attributed to Bernheim, S..

2 recordsLinked to original sources

Torsion of the heart tube by shortage of progenitor cells : identification of Greb1l as a genetic determinant of criss-cross heart in mice

Despite their burden and impact, most congenital defects remain poorly understood by lack of knowledge of the embryological mechanisms. Here, we identify Greb1l mutants as the first mouse model of criss-cross heart. Based on 3D quantifications of shape changes, we demonstrate that torsion of the atrioventricular canal occurs together with supero-inferior ventricles at E10.5, after heart looping. Mutants phenocopy specific features of partial deficiency in retinoic acid signalling, suggesting that GREB1L is a novel modulator of this signalling. Spatio-temporal gene mapping and cross-correlated transcriptomic analyses further reveal the role of Greb1l in maintaining a pool of precursor cells during heart tube elongation, by controlling ribosome biogenesis and cell differentiation. Growth arrest and malposition of the outflow tract are predictive of abnormal tube remodelling in mutants. Our work on a rare cardiac malformation opens novel perspectives on the origin of a broader spectrum of congenital defects associated with GREB1L in humans. HighlightsO_LIGreb1l inactivation is the first model of criss-cross heart C_LIO_LIGrowth arrest of the outflow tract and reduced pole distance are predictive of the torsion of the atrioventricular canal, and also account for associated defects of supero-inferior ventricles and malposition of the great vessels C_LIO_LIVentricle position needs to be maintained after heart looping C_LIO_LIGREB1L, which is associated in humans with a spectrum of congenital defects, is required to maintain precursor cells, by promoting ribosome biogenesis and restricting cell differentiation. C_LIO_LIGREB1L is a novel factor involved in retinoic acid signalling. C_LI In BriefGREB1L is associated with a spectrum of congenital defects in humans. Bernheim et al now uncover its function in maintaining a reservoir of precursor cells. Inactivation of Greb1l in the mouse impairs the elongation of the heart tube leading to criss-cross heart with supero-inferior ventricles.

developmental biology↗

Transient Nodal signalling in left precursors coordinates opposed asymmetries shaping the heart loop

The secreted factor Nodal has been shown to be a major left determinant. Although it is associated with severe congenital heart defects, its role in heart morphogenesis has remained poorly understood. Here, we report that Nodal is transiently active in precursors of the mouse heart tube poles, before the morphological changes of heart looping. In conditional mutants, we show that Nodal is not required to initiate asymmetric morphogenesis. We provide evidence of a heart-specific random generator of asymmetry that is independent of Nodal. Using 3D quantifications and simulations, we demonstrate that Nodal functions as a bias of this mechanism: it is required to amplify and coordinate opposed left-right asymmetries at the heart tube poles, thus generating a robust helical shape. We identify downstream effectors of Nodal signalling, regulating asymmetries in cell proliferation, cell differentiation and extra-cellular matrix composition. Our work provides novel insight into how Nodal regulates asymmetric organogenesis.

developmental biology↗