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Tbx1 Genetically Interacts With the Transforming Growth Factor-beta/Bone Morphogenetic Protein Inhibitor Smad7 During Great Vessel Remodeling

Authors :
Irinna Papangeli
Peter J. Scambler
Source :
Circulation Research; Vol 112
Publication Year :
2013
Publisher :
LIPPINCOTT WILLIAMS & WILKINS, 2013.

Abstract

Rationale: Growth and remodeling of the pharyngeal arch arteries are vital for the development of a mature great vessel system. Dysmorphogenesis of the fourth arch arteries can result in interruption of the aortic arch type B, typically found in DiGeorge syndrome. Tbx1 haploinsufficient embryos, which model DiGeorge syndrome, display fourth arch artery defects during formation of the vessels. Recovery from such defects is a documented yet unexplained phenotype in Tbx1 haploinsufficiency. Objective: To understand the nature of fourth arch artery growth recovery in Tbx1 haploinsufficiency and its underlying genetic control. Methods and Results: We categorized vessel phenotypes of Tbx1 heterozygotes as hypoplastic or aplastic at the conclusion of pharyngeal artery formation and compared these against the frequency of vessel defects scored at the end of great vessel development. The frequency of hypoplastic vessels decreased during embryogenesis, whereas no reduction of vessel aplasia was seen, implying recovery is attributable to remodeling of hypoplastic vessels. We showed that Smad7 , an inhibitory Smad within the transforming growth factor-β pathway, is regulated by Tbx1, is required for arch artery remodeling, and genetically interacts with Tbx1 in this process. Tbx1 and Tbx1 ; Smad7 haploinsufficiency affected several remodeling processes; however, concurrent haploinsufficiency particularly impacted on the earliest stage of vascular smooth muscle cell vessel coverage and subsequent fibronectin deposition. Conditional reconstitution of Smad7 with a Tbx1Cre driver indicated that the interaction between the 2 genes is cell autonomous. Conclusions: Tbx1 acts upstream of Smad7 controlling vascular smooth muscle and extracellular matrix investment of the fourth arch artery.

Details

Language :
English
ISSN :
15244571
Volume :
112
Issue :
1
Database :
OpenAIRE
Journal :
Circulation Research
Accession number :
edsair.doi.dedup.....2c154d477fc69f3d03a55477829e8049
Full Text :
https://doi.org/10.1161/CIRCRESAHA.112.270223