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PMID: 18029401 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Compensatory signalling induced in the yolk sac vasculature by deletion of TGFbeta receptors in mice.

Journal of cell science ·Vol. 120 ·No. Pt 24 ·2007-12-15 ·Pages 4269-77

Carvalho RL, Itoh F, Goumans MJ, Lebrin F, Kato M, Takahashi S, Ema M, Itoh S, van Rooijen M, Bertolino P, Ten Dijke P, Mummery CL

Abstract

Vascular development depends on transforming growth factor beta (TGFbeta), but whether signalling of this protein is required for the development of endothelial cells (ECs), vascular smooth muscle cells (VSMCs) or both is unclear. To address this, we selectively deleted the type I (ALK5, TGFBR1) and type II (TbetaRII, TGFBR2) receptors in mice. Absence of either receptor in ECs resulted in vascular defects in the yolk sac, as seen in mice lacking receptors in all cells, causing embryonic lethality at embryonic day (E)10.5. Deletion of TbetaRII specifically in VSMCs also resulted in vascular defects in the yolk sac; however, these were observed at later stages of development, allowing the embryo to survive to E12.5. Because TGFbeta can also signal in ECs via ALK1 (ACVRL1), we replaced ALK5 by a mutant defective in SMAD2 and SMAD3 (SMAD2/3) activation that retained the ability to transactivate ALK1. This again caused defects in the yolk sac vasculature with embryonic lethality at E10.5, demonstrating that TGFbeta/ALK1 signalling in ECs cannot compensate for the lack of TGFbeta/ALK5-induced SMAD2/3 signalling in vivo. Unexpectedly, SMAD2 phosphorylation and alpha-smooth muscle actin (SMAalpha, ACTA2) expression occurred in the yolk sacs of ALK5(-/-) embryos and ALK5(-/-) embryonic stem cells undergoing vasculogenesis, and these processes could be blocked by an ALK4 (ACVR1B)/ALK5 inhibitor. Together, the data show that ALK5 is required in ECs and VSMCs for yolk sac vasculogenesis; in the absence of ALK5, ALK4 mediates SMAD2 phosphorylation and consequently SMAalpha expression.

MeSH Terms
Activin Receptors, Type I/genetics,metabolism Activin Receptors, Type II Animals Blood Vessels/metabolism Endothelial Cells/metabolism Mice Mice, Mutant Strains Mice, Transgenic Myocytes, Smooth Muscle/metabolism Protein Serine-Threonine Kinases/genetics,metabolism Receptor, Transforming Growth Factor-beta Type I Receptor, Transforming Growth Factor-beta Type II Receptors, Transforming Growth Factor beta/genetics,metabolism Signal Transduction Smad2 Protein/metabolism Smad3 Protein/metabolism Transforming Growth Factor beta/metabolism Yolk Sac/blood supply,embryology,metabolism
Chemicals
Receptors, Transforming Growth Factor beta Smad2 Protein Smad2 protein, mouse Smad3 Protein Smad3 protein, mouse Transforming Growth Factor beta Protein Serine-Threonine Kinases Activin Receptors, Type I Activin Receptors, Type II Acvr1b protein, mouse Acvrl1 protein, mouse Receptor, Transforming Growth Factor-beta Type I Receptor, Transforming Growth Factor-beta Type II Tgfbr1 protein, mouse
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Carvalho Rita L C
Hubrecht Laboratory, Netherlands Institute for Developmental Biology, Uppsalalaan 8, 3584CT Utrecht, The Netherlands.
Itoh Fumiko
Goumans Marie-Jose
Lebrin Franck
Kato Mitsuyasu
Takahashi Satoru
Ema Masatsugu
Itoh Susumu
van Rooijen Marga
Bertolino Philippe
Ten Dijke Peter
Mummery Christine L
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
0021-9533
Published
2007-12-15
Epub
2007-00-20
Pages
4269-77
Language
English
Region
England
NLM ID
0052457
Subset
IM
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