Literature DB >> 17610846

Redundant roles of Sox17 and Sox18 in early cardiovascular development of mouse embryos.

Youhei Sakamoto1, Kenshiro Hara, Masami Kanai-Azuma, Toshiyasu Matsui, Yutaroh Miura, Naoki Tsunekawa, Masamichi Kurohmaru, Yukio Saijoh, Peter Koopman, Yoshiakira Kanai.   

Abstract

Sox7, -17 and -18 constitute the Sox subgroup F (SoxF) of HMG box transcription factor genes, which all are co-expressed in developing vascular endothelial cells in mice. Here we characterized cardiovascular phenotypes of Sox17/Sox18-double and Sox17-single null embryos during early-somite stages. Whole-mount PECAM staining demonstrated the aberrant heart looping, enlarged cardinal vein and mild defects in anterior dorsal aorta formation in Sox17 single-null embryos. The Sox17/Sox18 double-null embryos showed more severe defects in formation of anterior dorsal aorta and head/cervical microvasculature, and in some cases, aberrant differentiation of endocardial cells and defective fusion of the endocardial tube. However, the posterior dorsal aorta and allantoic microvasculature was properly formed in all of the Sox17/Sox18 double-null embryos. The anomalies in both anterior dorsal aorta and head/cervical vasculature corresponded with the weak Sox7 expression sites. This suggests the region-specific redundant activities of three SoxF members along the anteroposterior axis of embryonic vascular network.

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Year:  2007        PMID: 17610846     DOI: 10.1016/j.bbrc.2007.06.093

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  68 in total

1.  Sox17 and chordin are required for formation of Kupffer's vesicle and left-right asymmetry determination in zebrafish.

Authors:  Emil Aamar; Igor B Dawid
Journal:  Dev Dyn       Date:  2010-11       Impact factor: 3.780

2.  Gut endoderm is involved in the transfer of left-right asymmetry from the node to the lateral plate mesoderm in the mouse embryo.

Authors:  Ranajeet S Saund; Masami Kanai-Azuma; Yoshiakira Kanai; Injune Kim; Mary T Lucero; Yukio Saijoh
Journal:  Development       Date:  2012-05-23       Impact factor: 6.868

3.  Genome-scale study of transcription factor expression in the branching mouse lung.

Authors:  John C Herriges; Lan Yi; Elizabeth A Hines; Julie F Harvey; Guoliang Xu; Paul A Gray; Qiufu Ma; Xin Sun
Journal:  Dev Dyn       Date:  2012-07-20       Impact factor: 3.780

4.  Foxp1 coordinates cardiomyocyte proliferation through both cell-autonomous and nonautonomous mechanisms.

Authors:  Yuzhen Zhang; Shanru Li; Lijun Yuan; Ying Tian; Joel Weidenfeld; Jifu Yang; Feiyan Liu; Ann L Chokas; Edward E Morrisey
Journal:  Genes Dev       Date:  2010-08-15       Impact factor: 11.361

5.  Mouse model reveals the role of SOX7 in the development of congenital diaphragmatic hernia associated with recurrent deletions of 8p23.1.

Authors:  Margaret J Wat; Tyler F Beck; Andrés Hernández-García; Zhiyin Yu; Danielle Veenma; Monica Garcia; Ashley M Holder; Jeanette J Wat; Yuqing Chen; Carrie A Mohila; Kevin P Lally; Mary Dickinson; Dick Tibboel; Annelies de Klein; Brendan Lee; Daryl A Scott
Journal:  Hum Mol Genet       Date:  2012-06-20       Impact factor: 6.150

6.  Elevated endothelial Sox2 causes lumen disruption and cerebral arteriovenous malformations.

Authors:  Jiayi Yao; Xiuju Wu; Daoqin Zhang; Lumin Wang; Li Zhang; Eric X Reynolds; Carlos Hernandez; Kristina I Boström; Yucheng Yao
Journal:  J Clin Invest       Date:  2019-06-24       Impact factor: 14.808

7.  SoxF factors induce Notch1 expression via direct transcriptional regulation during early arterial development.

Authors:  Ivy Kim-Ni Chiang; Martin Fritzsche; Cathy Pichol-Thievend; Alice Neal; Kelly Holmes; Anne Lagendijk; Jeroen Overman; Donatella D'Angelo; Alice Omini; Dorien Hermkens; Emmanuelle Lesieur; Ke Liu; Indrika Ratnayaka; Monica Corada; George Bou-Gharios; Jason Carroll; Elisabetta Dejana; Stefan Schulte-Merker; Benjamin Hogan; Monica Beltrame; Sarah De Val; Mathias Francois
Journal:  Development       Date:  2017-06-15       Impact factor: 6.868

8.  Sry-type HMG box 18 contributes to the differentiation of bone marrow-derived mesenchymal stem cells to endothelial cells.

Authors:  Izuagie Attairu Ikhapoh; Christopher J Pelham; Devendra K Agrawal
Journal:  Differentiation       Date:  2015-04-23       Impact factor: 3.880

9.  Susceptibility loci for intracranial aneurysm in European and Japanese populations.

Authors:  Kaya Bilguvar; Katsuhito Yasuno; Mika Niemelä; Ynte M Ruigrok; Mikael von Und Zu Fraunberg; Cornelia M van Duijn; Leonard H van den Berg; Shrikant Mane; Christopher E Mason; Murim Choi; Emília Gaál; Yasar Bayri; Luis Kolb; Zulfikar Arlier; Sudhakar Ravuri; Antti Ronkainen; Atsushi Tajima; Aki Laakso; Akira Hata; Hidetoshi Kasuya; Timo Koivisto; Jaakko Rinne; Juha Ohman; Monique M B Breteler; Cisca Wijmenga; Matthew W State; Gabriel J E Rinkel; Juha Hernesniemi; Juha E Jääskeläinen; Aarno Palotie; Ituro Inoue; Richard P Lifton; Murat Günel
Journal:  Nat Genet       Date:  2008-11-09       Impact factor: 38.330

10.  Norrin, frizzled-4, and Lrp5 signaling in endothelial cells controls a genetic program for retinal vascularization.

Authors:  Xin Ye; Yanshu Wang; Hugh Cahill; Minzhong Yu; Tudor C Badea; Philip M Smallwood; Neal S Peachey; Jeremy Nathans
Journal:  Cell       Date:  2009-10-16       Impact factor: 41.582

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