Pk. Datta et al., Identification of STRAP, a novel WD domain protein in transforming growth factor-beta signaling, J BIOL CHEM, 273(52), 1998, pp. 34671-34674
Transforming growth factor-beta 1 (TGF-beta 1) is the prototype of a large
family of proteins that regulate a variety of biological processes. The ple
iotropic responses to TGF-beta are mediated via ligand-induced heteromeric
complex formation by type I (T beta R-I) and type II (T beta R-II) serine-t
hreonine kinase receptors. Several studies have shown that T beta R-II acts
as a primary receptor, binding TGF-beta and phosphorylating T beta R-I, wh
ose kinase activity then propagates the signals. Therefore, intracellular p
roteins that interact with type I receptors are likely to play important ro
les in TGF-beta signaling. We have identified a novel WD domain-containing
protein, designated STRAP (serine-threonine kinase receptor-associated prot
ein), which interacts with T beta R-I in a yeast two-hybrid system. STRAP a
ssociates with both functional T beta R-I and T beta R-II in vivo. Overexpr
ession of STRAP leads to inhibition of TGF-beta-mediated transcriptional ac
tivation. It also shows synergistic inhibition of TGF-beta signaling in con
cert with Smad7, but not with Smad6, as measured by TGF-beta-dependent tran
scriptional reporters. The existence of the STRAP gene from yeast to mammal
s indicates an evolutionarily conserved function in eukaryotes. The data su
ggest a potential role for STRAP in TGF-beta signal transduction.