| Literature DB >> 16601693 |
Wei Liu1, Hongliang Rui, Jifeng Wang, Shuyong Lin, Ying He, Mingliang Chen, Qinxi Li, Zhiyun Ye, Suping Zhang, Siu Chiu Chan, Ye-Guang Chen, Jiahuai Han, Sheng-Cai Lin.
Abstract
TGF-beta signaling involves a wide array of signaling molecules and multiple controlling events. Scaffold proteins create a functional proximity of signaling molecules and control the specificity of signal transduction. While many components involved in the TGF-beta pathway have been elucidated, little is known about how those components are coordinated by scaffold proteins. Here, we show that Axin activates TGF-beta signaling by forming a multimeric complex consisting of Smad7 and ubiquitin E3 ligase Arkadia. Axin depends on Arkadia to facilitate TGF-beta signaling, as their small interfering RNAs reciprocally abolished the stimulatory effect on TGF-beta signaling. Specific knockdown of Axin or Arkadia revealed that Axin and Arkadia cooperate with each other in promoting Smad7 ubiquitination. Pulse-chase experiments further illustrated that Axin significantly decreased the half-life of Smad7. Axin also induces nuclear export of Smad7. Interestingly, Axin associates with Arkadia and Smad7 independently of TGF-beta signal, in contrast to its transient association with inactive Smad3. However, coexpression of Wnt-1 reduced Smad7 ubiquitination by downregulating Axin levels, underscoring the importance of Axin as an intrinsic regulator in TGF-beta signaling.Entities:
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Year: 2006 PMID: 16601693 PMCID: PMC1440825 DOI: 10.1038/sj.emboj.7601057
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598