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低密度脂蛋白受体相关蛋白6(LRP6)通过抑制糖原合成酶激酶3(GSK3)对β-连环蛋白的磷酸化作用,独立于轴抑制蛋白(Axin)降解来转导经典Wnt信号。

LRP6 transduces a canonical Wnt signal independently of Axin degradation by inhibiting GSK3's phosphorylation of beta-catenin.

作者信息

Cselenyi Christopher S, Jernigan Kristin K, Tahinci Emilios, Thorne Curtis A, Lee Laura A, Lee Ethan

机构信息

Department of Cell and Developmental Biology, Vanderbilt University Medical Center, 465 21st Avenue South, U-4200 Learned Laboratory, Medical Research Building III, Nashville, TN 37232-8240, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Jun 10;105(23):8032-7. doi: 10.1073/pnas.0803025105. Epub 2008 May 28.

Abstract

Wnt/beta-catenin signaling controls various cell fates in metazoan development and is misregulated in several cancers and developmental disorders. Binding of a Wnt ligand to its transmembrane coreceptors inhibits phosphorylation and degradation of the transcriptional coactivator beta-catenin, which then translocates to the nucleus to regulate target gene expression. To understand how Wnt signaling prevents beta-catenin degradation, we focused on the Wnt coreceptor low-density lipoprotein receptor-related protein 6 (LRP6), which is required for signal transduction and is sufficient to activate Wnt signaling when overexpressed. LRP6 has been proposed to stabilize beta-catenin by stimulating degradation of Axin, a scaffold protein required for beta-catenin degradation. In certain systems, however, Wnt-mediated Axin turnover is not detected until after beta-catenin has been stabilized. Thus, LRP6 may also signal through a mechanism distinct from Axin degradation. To establish a biochemically tractable system to test this hypothesis, we expressed and purified the LRP6 intracellular domain from bacteria and show that it promotes beta-catenin stabilization and Axin degradation in Xenopus egg extract. Using an Axin mutant that does not degrade in response to LRP6, we demonstrate that LRP6 can stabilize beta-catenin in the absence of Axin turnover. Through experiments in egg extract and reconstitution with purified proteins, we identify a mechanism whereby LRP6 stabilizes beta-catenin independently of Axin degradation by directly inhibiting GSK3's phosphorylation of beta-catenin.

摘要

Wnt/β-连环蛋白信号通路在多细胞动物发育过程中控制着各种细胞命运,并且在多种癌症和发育障碍中发生失调。Wnt配体与其跨膜共受体的结合会抑制转录共激活因子β-连环蛋白的磷酸化和降解,随后β-连环蛋白会转位至细胞核以调节靶基因的表达。为了了解Wnt信号通路如何阻止β-连环蛋白的降解,我们聚焦于Wnt共受体低密度脂蛋白受体相关蛋白6(LRP6),它是信号转导所必需的,并且过表达时足以激活Wnt信号通路。有人提出LRP6通过刺激Axin(一种β-连环蛋白降解所需的支架蛋白)的降解来稳定β-连环蛋白。然而,在某些系统中,直到β-连环蛋白稳定后才检测到Wnt介导的Axin周转。因此,LRP6也可能通过一种不同于Axin降解的机制来传递信号。为了建立一个生化上易于处理的系统来验证这一假设,我们从细菌中表达并纯化了LRP6细胞内结构域,并表明它在非洲爪蟾卵提取物中促进β-连环蛋白的稳定和Axin的降解。使用一种对LRP6不产生降解反应的Axin突变体,我们证明LRP6在没有Axin周转的情况下也能稳定β-连环蛋白。通过在卵提取物中的实验以及用纯化蛋白进行的重组实验,我们确定了一种机制,即LRP6通过直接抑制GSK3对β-连环蛋白的磷酸化,独立于Axin降解来稳定β-连环蛋白。

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