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由Smad7招募的GADD34-PP1c使转化生长因子β I型受体去磷酸化。

GADD34-PP1c recruited by Smad7 dephosphorylates TGFbeta type I receptor.

作者信息

Shi Weibin, Sun Chuanxi, He Bin, Xiong Wencheng, Shi Xingming, Yao Dachun, Cao Xu

机构信息

Department of Pathology, University of Alabama at Birmingham School of Medicine, Birmingham, AL 35294, USA.

出版信息

J Cell Biol. 2004 Jan 19;164(2):291-300. doi: 10.1083/jcb.200307151. Epub 2004 Jan 12.

Abstract

The cascade of phosphorylation is a pivotal event in transforming growth factor beta (TGFbeta) signaling. Reversible phosphorylation regulates fundamental aspects of cell activity. TGFbeta-induced Smad7 binds to type I receptor (TGFbeta type I receptor; TbetaRI) functioning as a receptor kinase antagonist. We found Smad7 interacts with growth arrest and DNA damage protein, GADD34, a regulatory subunit of the protein phosphatase 1 (PP1) holoenzyme, which subsequently recruits catalytic subunit of PP1 (PP1c) to dephosphorylate TbetaRI. Blocking Smad7 expression by RNA interference inhibits association of GADD34-PP1c complex with TbetaRI, indicating Smad7 acts as an adaptor protein in the formation of the PP1 holoenzyme that targets TbetaRI for dephosphorylation. SARA (Smad anchor for receptor activation) enhances the recruitment PP1c to the Smad7-GADD34 complex by controlling the specific subcellular localization of PP1c. Importantly, GADD34-PP1c recruited by Smad7 inhibits TGFbeta-induced cell cycle arrest and mediates TGFbeta resistance in responding to UV light irradiation. The dephosphorylation of TbetaRI mediated by Smad7 is an effective mechanism for governing negative feedback in TGFbeta signaling.

摘要

磷酸化级联反应是转化生长因子β(TGFβ)信号传导中的关键事件。可逆磷酸化调节细胞活动的基本方面。TGFβ诱导的Smad7与I型受体(TGFβI型受体;TβRI)结合,作为受体激酶拮抗剂发挥作用。我们发现Smad7与生长停滞和DNA损伤蛋白GADD34相互作用,GADD34是蛋白磷酸酶1(PP1)全酶的调节亚基,随后招募PP1的催化亚基(PP1c)使TβRI去磷酸化。通过RNA干扰阻断Smad7表达可抑制GADD34-PP1c复合物与TβRI的结合,表明Smad7在靶向TβRI进行去磷酸化的PP1全酶形成中充当衔接蛋白。SARA(受体激活的Smad锚定蛋白)通过控制PP1c的特定亚细胞定位增强PP1c向Smad7-GADD34复合物的募集。重要的是,Smad7招募的GADD34-PP1c抑制TGFβ诱导的细胞周期停滞,并介导对紫外线照射的TGFβ抗性。Smad7介导的TβRI去磷酸化是控制TGFβ信号负反馈的有效机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d631/2172339/fa01df45c53e/200307151f1.jpg

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