Article

The TGF-β signaling modulators TRAP1/TGFBRAP1 and VPS39/Vam6/TLP are essential for early embryonic development.

Institute for Medical Microbiology and Hospital Hygiene, University of Duesseldorf, 40225 Duesseldorf, Germany.
Immunobiology (impact factor: 3.2). 08/2010; 216(3):343-50. DOI:10.1016/j.imbio.2010.07.006 pp.343-50
Source: PubMed

ABSTRACT The pleiotropic cytokine transforming growth factor-β (TGF-β) signals through different pathways among which the Smad- and the MAP-Kinase pathways are already well characterized. Both pathways utilize adaptor/chaperone molecules that facilitate or modulate the intracellular signaling events. Two of the proteins shown in vitro to play a role in Smad-dependent signaling are the TGF-β Receptor Associated Protein-1 (TRAP1, also TGFBRAP1) and its homologue VPS39, also known as Vam6 and TRAP1-Like-Protein (TLP). We generated mice deficient for TRAP1 and VPS39/TLP, respectively. Absence of TRAP1 protein results in death at either of two defined timepoints during embryogenesis, before the blastula stage or during gastrulation, whereas most of the VPS39 deficient mice die before E6.5. Heterozygous mice show no overt phenotype. In summary, our data indicate that TRAP1 and VPS39 are nonredundant and essentially required for early embryonic development.

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Keywords

blastula stage
 
different pathways
 
E6.5. Heterozygous mice
 
embryonic development
 
homologue VPS39
 
MAP-Kinase pathways
 
mice deficient
 
modulate
 
overt phenotype
 
pathways utilize adaptor/chaperone molecules
 
pleiotropic cytokine
 
proteins
 
Smad-
 
Smad-dependent signaling
 
TGF-β Receptor Associated Protein-1
 
TGFBRAP1
 
TRAP1
 
TRAP1 protein results
 
TRAP1-Like-Protein
 
VPS39 deficient mice