Literature DB >> 17195180

SOST expression is restricted to the great arteries during embryonic and neonatal cardiovascular development.

Rutger L van Bezooijen1, Marco C Deruiter, Nathalie Vilain, Rui M Monteiro, Annemieke Visser, Lianne van der Wee-Pals, Conny J van Munsteren, Pancras C W Hogendoorn, Michel Aguet, Christine L Mummery, Socrates E Papapoulos, Peter Ten Dijke, Clemens W G M Löwik.   

Abstract

Spatial-temporal regulation of bone morphogenetic protein (BMP) and Wnt activity is essential for normal cardiovascular development, and altered activity of these growth factors causes maldevelopment of the cardiac outflow tract and great arteries. In the present study, we show that SOST, a Dan family member reported to antagonize BMP and Wnt activity, is expressed within the medial vessel wall of the great arteries containing smooth muscle cells. The ascending aorta, aortic arch, brachiocephalic artery, common carotids, and pulmonary trunk were all associated with SOST expressing smooth muscle cells, while the heart itself, including the valves, and more distal arteries, that is, pulmonary arteries, subclavian arteries, and descending aorta, were negative. SOST was expressed from embryonic day 15.5 up to the neonatal period. SOST expression, however, did not correspond with inhibition of Smad-dependent BMP activity or beta-catenin-dependent Wnt activity in the great arteries. Activity of both signaling pathways was already down-regulated before induction of SOST expression.

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Year:  2007        PMID: 17195180     DOI: 10.1002/dvdy.21054

Source DB:  PubMed          Journal:  Dev Dyn        ISSN: 1058-8388            Impact factor:   3.780


  15 in total

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Review 5.  Sclerostin expression and functions beyond the osteocyte.

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Authors:  Nicole M Collette; Cristal S Yee; Deepa Murugesh; Aimy Sebastian; Leila Taher; Nicholas W Gale; Aris N Economides; Richard M Harland; Gabriela G Loots
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Review 9.  Shedding quantitative fluorescence light on novel regulatory mechanisms in skeletal biomedicine and biodentistry.

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10.  A single-cell transcriptomic landscape of primate arterial aging.

Authors:  Weiqi Zhang; Shu Zhang; Pengze Yan; Jie Ren; Moshi Song; Jingyi Li; Jinghui Lei; Huize Pan; Si Wang; Xibo Ma; Shuai Ma; Hongyu Li; Fei Sun; Haifeng Wan; Wei Li; Piu Chan; Qi Zhou; Guang-Hui Liu; Fuchou Tang; Jing Qu
Journal:  Nat Commun       Date:  2020-05-05       Impact factor: 14.919

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