Roles of Pathway-Specific and Inhibitory Smads in Activin Receptor Signaling
Author(s) -
JeanJacques Lebrun,
Kazuaki Takabe,
Yan Chen,
Wylie Vale
Publication year - 1999
Publication title -
molecular endocrinology
Language(s) - English
Resource type - Journals
eISSN - 1944-9917
pISSN - 0888-8809
DOI - 10.1210/mend.13.1.0218
Subject(s) - acvr2b , activin type 2 receptors , activin receptor , smad , biology , smad2 protein , microbiology and biotechnology , r smad , signal transduction , receptor , tgf beta signaling pathway , acvrl1 , transforming growth factor , transcription factor , endoglin , genetics , gene , stem cell , cd34
Activins and other members of the transforming growth factor-β-like superfamily of growth factors transduce their signals by interacting with two types of receptor serine/threonine kinases. The Smad proteins, a new family of intracellular mediators are involved in the signaling pathways of these receptors, but the initial stages of their activation as well as their specific functions remain to be defined. We report here that the pathway-specific Smad2 and 3 can form a complex with the activin receptor in a ligand-dependent manner. This complex formation is rapid but also transient. Indeed, soon after their association with the activin receptor, Smad2 and Smad3 are released into the cytoplasm where they interact with the common partner Smad4. These Smad complexes then mediate activin-induced transcription. Finally, we show that the inhibitory Smad7 can prevent the association of the two pathway-specific Smads with the activin receptor complex, thereby blocking the activin signal.
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