Evidence in animal models indicates that signaling networks functioning in the developing pharyngeal arches regulate stereotyped processes critical for proper development of the aortic arch and cardiac outflow tract. Here, we describe the phenotype of mice lacking fibroblast growth factor 15 (Fgf15), which encodes a secreted signaling molecule expressed within the developing pharyngeal arches. Homozygous Fgf15 mutants present heart defects consistent with malalignment of the aorta and pulmonary trunk. These defects correlate with early morphological defects of the outflow tract due to aberrant behavior of the cardiac neural crest. We demonstrate that Fgf15 expression within the pharyngeal arches is unaltered by a loss of Tbx1, a key regulator of pharyngeal arch development implicated in DiGeorge syndrome. In addition, Fgf15 and Tbx1 do not interact genetically, suggesting that Fgf15 operates through a pathway independent of Tbx1. These studies reveal a novel role of Fgf15 during development of the cardiac outflow tract. (c) 2005 Wiley-Liss, Inc.

Fgf15 is required for proper morphogenesis of the mouse cardiac outflow tract / J. W., Vincentz; J. R., Mcwhirter; C., Murre; Baldini, Antonio; Y., Furuta. - In: GENESIS. - ISSN 1526-954X. - 41:(2005), pp. 192-201. [10.1002/gene.20114]

Fgf15 is required for proper morphogenesis of the mouse cardiac outflow tract

BALDINI, ANTONIO;
2005

Abstract

Evidence in animal models indicates that signaling networks functioning in the developing pharyngeal arches regulate stereotyped processes critical for proper development of the aortic arch and cardiac outflow tract. Here, we describe the phenotype of mice lacking fibroblast growth factor 15 (Fgf15), which encodes a secreted signaling molecule expressed within the developing pharyngeal arches. Homozygous Fgf15 mutants present heart defects consistent with malalignment of the aorta and pulmonary trunk. These defects correlate with early morphological defects of the outflow tract due to aberrant behavior of the cardiac neural crest. We demonstrate that Fgf15 expression within the pharyngeal arches is unaltered by a loss of Tbx1, a key regulator of pharyngeal arch development implicated in DiGeorge syndrome. In addition, Fgf15 and Tbx1 do not interact genetically, suggesting that Fgf15 operates through a pathway independent of Tbx1. These studies reveal a novel role of Fgf15 during development of the cardiac outflow tract. (c) 2005 Wiley-Liss, Inc.
2005
Fgf15 is required for proper morphogenesis of the mouse cardiac outflow tract / J. W., Vincentz; J. R., Mcwhirter; C., Murre; Baldini, Antonio; Y., Furuta. - In: GENESIS. - ISSN 1526-954X. - 41:(2005), pp. 192-201. [10.1002/gene.20114]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/462629
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