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  4. Integration of TGF-beta and Ras/MAPK signaling through p53 phosphorylation.
 
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Integration of TGF-beta and Ras/MAPK signaling through p53 phosphorylation.

Author(s)
ASI Sponsor
Cordenonsi, Michelangelo
Montagner, Marco
Adorno, Maddalena
Subjects

Amino Acid Substituti...

Animals

Casein Kinase Idelta

Casein Kinase Idelta:...

Casein Kinase Iepsilo...

Casein Kinase Iepsilo...

Cell Line

Cell Proliferation

Developmental

Embryo

Embryonic Development...

Embryonic Induction

Fibroblast Growth Fac...

Fibroblast Growth Fac...

Gene Expression Regul...

Humans

Mesoderm

Mesoderm: metabolism

Mitogen-Activated Pro...

Mitogen-Activated Pro...

Nonmammalian

Nonmammalian: metabol...

Phosphorylation

Receptor Protein-Tyro...

Receptor Protein-Tyro...

Signal Transduction

Smad Proteins

Smad Proteins: metabo...

Transforming Growth F...

Transforming Growth F...

Tumor

Tumor Suppressor Prot...

Tumor Suppressor Prot...

Xenopus

ras Proteins

ras Proteins: metabol...

Date Issued
2007-02-01
Abstract
During development and tissue homeostasis, cells must integrate different signals. We investigated how cell behavior is controlled by the combined activity of transforming growth factor-beta (TGF-beta) and receptor tyrosine kinase (RTK) signaling, whose integration mechanism is unknown. We find that RTK/Ras/MAPK (mitogen-activated protein kinase) activity induces p53 N-terminal phosphorylation, enabling the interaction of p53 with the TGF-beta-activated Smads. This mechanism confines mesoderm specification in Xenopus embryos and promotes TGF-beta cytostasis in human cells. These data indicate a mechanism to allow extracellular cues to specify the TGF-beta gene-expression program.
URI
https://hdl.handle.net/20.500.13025/2034
ISSN
1095-9203
Journal
Science (New York, N.Y.)
URL
http://www.sciencemag.org/cgi/content/abstract/315/5813/840
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