» Articles » PMID: 33454003

Importance of Endothelial Hey1 Expression for Thoracic Great Vessel Development and Its Distal Enhancer for Notch-dependent Endothelial Transcription

Overview
Journal J Biol Chem
Specialty Biochemistry
Date 2021 Jan 17
PMID 33454003
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

Thoracic great vessels such as the aorta and subclavian arteries are formed through dynamic remodeling of embryonic pharyngeal arch arteries (PAAs). Previous work has shown that loss of a basic helix-loop-helix transcription factor Hey1 in mice causes abnormal fourth PAA development and lethal great vessel anomalies resembling congenital malformations in humans. However, how Hey1 mediates vascular formation remains unclear. In this study, we revealed that Hey1 in vascular endothelial cells, but not in smooth muscle cells, played essential roles for PAA development and great vessel morphogenesis in mouse embryos. Tek-Cre-mediated Hey1 deletion in endothelial cells affected endothelial tube formation and smooth muscle differentiation in embryonic fourth PAAs and resulted in interruption of the aortic arch and other great vessel malformations. Cell specificity and signal responsiveness of Hey1 expression were controlled through multiple cis-regulatory regions. We found two distal genomic regions that had enhancer activity in endothelial cells and in the pharyngeal epithelium and somites, respectively. The novel endothelial enhancer was conserved across species and was specific to large-caliber arteries. Its transcriptional activity was regulated by Notch signaling in vitro and in vivo, but not by ALK1 signaling and other transcription factors implicated in endothelial cell specificity. The distal endothelial enhancer was not essential for basal Hey1 expression in mouse embryos but may likely serve for Notch-dependent transcriptional control in endothelial cells together with the proximal regulatory region. These findings help in understanding the significance and regulation of endothelial Hey1 as a mediator of multiple signaling pathways in embryonic vascular formation.

Citing Articles

Evaluating the transcriptional regulators of arterial gene expression via a catalogue of characterized arterial enhancers.

Nornes S, Bruche S, Adak N, McCracken I, De Val S Elife. 2025; 14.

PMID: 39819837 PMC: 11896612. DOI: 10.7554/eLife.102440.


The Effects of Perfluorooctanesulfonic acid (PFOS) on Human Umbilical Vein Endothelial Cells (HUVECs) Proliferation and Gene Expression and its Implications on Fetal Development.

Ashby A, Murphy P, Jukosky J, Whipple C MicroPubl Biol. 2024; 2024.

PMID: 39712934 PMC: 11659881. DOI: 10.17912/micropub.biology.001318.


Novel insights into the pleiotropic health effects of growth differentiation factor 11 gained from genome-wide association studies in population biobanks.

Strosahl J, Ye K, Pazdro R BMC Genomics. 2024; 25(1):837.

PMID: 39237910 PMC: 11378601. DOI: 10.1186/s12864-024-10710-7.


Transcriptional regulators of arterial and venous identity in the developing mammalian embryo.

McCracken I, Baker A, Smart N, De Val S Curr Opin Physiol. 2024; 35:None.

PMID: 38328689 PMC: 10844100. DOI: 10.1016/j.cophys.2023.100691.


SUMOylation Fine-Tunes Endothelial HEY1 in the Regulation of Angiogenesis.

Ren R, Ding S, Ma K, Jiang Y, Wang Y, Chen J Circ Res. 2024; 134(2):203-222.

PMID: 38166414 PMC: 10872267. DOI: 10.1161/CIRCRESAHA.123.323398.


References
1.
Chiang I, Fritzsche M, Pichol-Thievend C, Neal A, Holmes K, Lagendijk A . SoxF factors induce Notch1 expression via direct transcriptional regulation during early arterial development. Development. 2017; 144(14):2629-2639. PMC: 5536923. DOI: 10.1242/dev.146241. View

2.
Bergwerff M, DeRuiter M, Hall S, Poelmann R, Gittenberger-de Groot A . Unique vascular morphology of the fourth aortic arches: possible implications for pathogenesis of type-B aortic arch interruption and anomalous right subclavian artery. Cardiovasc Res. 2000; 44(1):185-96. DOI: 10.1016/s0008-6363(99)00186-8. View

3.
Payne S, Burney M, McCue K, Popal N, Davidson S, Anderson R . A critical role for the chromatin remodeller CHD7 in anterior mesoderm during cardiovascular development. Dev Biol. 2015; 405(1):82-95. PMC: 4534312. DOI: 10.1016/j.ydbio.2015.06.017. View

4.
Tsuru A, Setoguchi T, Matsunoshita Y, Nagao-Kitamoto H, Nagano S, Yokouchi M . Hairy/enhancer-of-split related with YRPW motif protein 1 promotes osteosarcoma metastasis via matrix metallopeptidase 9 expression. Br J Cancer. 2015; 112(7):1232-40. PMC: 4385965. DOI: 10.1038/bjc.2015.84. View

5.
Kisanuki Y, Hammer R, Miyazaki J, Williams S, Richardson J, Yanagisawa M . Tie2-Cre transgenic mice: a new model for endothelial cell-lineage analysis in vivo. Dev Biol. 2001; 230(2):230-42. DOI: 10.1006/dbio.2000.0106. View