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Wnt/beta-catenin signaling: phosphorylation regulation of Wnt receptor-Axin inter

Wnt/beta-catenin signaling: phosphorylation regulation of Wnt receptor-Axin inter
Wnt/β-连环蛋白信号传导:Wnt 受体-Axin 间的磷酸化调节
批准号:
7990288
负责人:
Xi He
金额:
$33.06万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-04-01 至 2014-06-30

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中文摘要
翻译
描述(由申请人提供):Wnt家族分泌蛋白的信号调节胚胎发生和动态平衡的许多方面。去调控的Wnt信号与癌症、骨质疏松症和退行性疾病等人类疾病有关。因此,Wnt信号的研究对于理解基础生物学和人类健康具有至关重要的意义。在调节转录辅活化子2-连环蛋白稳定性的典型Wnt途径中,涉及两种类型的跨膜受体,它们构成Wnt受体复合体。一个是蛇纹石受体FrizzledFZ家族的成员,另一个是低密度脂蛋白受体相关蛋白(LRP)家族的单程跨膜受体,LRP5或LRP6。我们已经证明,Wnt诱导LRP6磷酸化/激活,从而招募轴蛋白支架蛋白,这是调节2-连环蛋白稳定性所必需的。但LRP6的磷酸化和活化以及Axin的募集如何导致2-连环蛋白的稳定一直知之甚少,这也是该应用的重点。目的1研究LRP6的磷酸化和信号转导。我们已经获得了LRP5-/-;LRP6-/-双基因敲除(LrpDKO)小鼠胚胎成纤维细胞。这些LrpDKO细胞为深入研究LRP6的磷酸化和信号转导提供了理想的遗传和生化系统。我们将在Lrp6DKO细胞中重新表达野生型和各种LRP6突变体,以确定LRP6磷酸化的起始步骤,不同磷酸化基序之间的功能和关系,以及它们在LRP6信号转导和所谓的LRP6信号小体形成中的潜在作用。目的2研究Wnt对Axin去磷酸化的调节作用。Axin是2-catenin磷酸化/降解和LRP6磷酸化/激活的关键支架蛋白,Axin与磷酸化的LRP6相互作用是2-catenin稳定的关键步骤。我们已经产生了针对磷酸化Axin的特异性抗体,并表明Wnt通过蛋白磷酸酶1(PP1)促进Axin去磷酸化。我们发现,这可能是通过PP1调节蛋白的磷酸化来调节的,PP1调节蛋白是Wnt信号中以前未被怀疑的成分。我们将研究Axin去磷酸化及其在Wnt调节的非洲爪哇胚胎构型中的作用。目的3研究Axin-LRP6的相互作用。我们将在Axin和LRP6之间建立一种新型的磷酸化调节的蛋白质相互作用,并揭示Axin磷酸化是如何通过一种新的分子内和自动调节机制控制其与其他合作伙伴(如LRP6)的相互作用。我们将提出一个紧密结合的工作模型,通过调节轴蛋白磷酸化-去磷酸化将LRP6激活与2-连环蛋白稳定联系起来。目的4研究Wnt激活轴蛋白PP1去磷酸化的机制。我们将研究LRP6如何利用LrpDKO细胞调节PP1的激活,我们特别感兴趣的是介导PP1的Wnt激活的一个或多个激酶的鉴定。这些研究可能会对Wnt从Wnt受体到2-catenin稳定的信号有一个全面的理解。 公共卫生相关性:细胞间的通讯对人类胚胎发育和组织内稳态至关重要,并通过关键的“信号转导”途径进行调节。这些通路的缺陷会导致人类癌症。这项提议旨在了解动物发育和人类细胞中这些信号通路之一的分子性质,即所谓的Wnt通路。我们的研究将为更好地了解人类胚胎发育和癌症的发病机制提供依据。
英文摘要
DESCRIPTION (provided by applicant): Signaling by the Wnt family of secreted proteins regulates many aspects of embryogenesis and homeostasis. Deregulated Wnt signaling is implicated in human diseases such as cancer, osteoporosis and degenerative disorders. The study of Wnt signaling thus has critical importance for understanding basic biology and human health. In the canonical Wnt pathway that regulates the stability of the transcriptional coactivator 2-catenin, two types of transmembrane receptors that constitute the Wnt receptor complex are involved. One is a member of the Frizzled (Fz) family of serpentine receptors, and the other is a single-pass transmembrane receptor of the LDL receptor related protein (LRP) family, LRP5 or LRP6. We have shown that Wnt induces LRP6 phosphorylation/activation, which recruits the Axin scaffolding protein that is essential for the regulation of 2-catenin stability. But how LRP6 phoshorylation and activation and the recruitment of Axin lead to 2- catenin stabilization has been poorly understood, and is the focus of this application. Aim 1 is to study LRP6 phosphorylation and signaling. We have generated Lrp5-/-; Lrp6-/- double knockout (LrpDKO) mouse embryonic fibroblast cells. These LrpDKO cells provide an ideal genetic plus biochemical system for in-depth investigation of LRP6 phosphorylation and signaling. We will re-express the wild type and various LRP6 mutants in Lrp6DKO cells to define the initiating step in LRP6 phosphorylation, the function and relationship among distinct phosphorylation motifs, and their potential roles in LRP6 signaling and in the so-called LRP6 "signalosome" formation. Aim 2 is to study Wnt regulation of Axin dephosphorylation. Axin is a pivotal scaffolding protein for 2-catenin phosphorylation/degradation and LRP6 phosphorylation/activation, and Axin interaction with phosphorylated LRP6 is a key step in 2-catenin stabilization. We have generated specific antibodies for phoshorylated Axin, and show that Wnt promotes Axin dephosphorylation via protein phosphatase 1 (PP1). We found that this is likely mediated through phosphorylation of a PP1 regulatory protein, a previously unsuspected component in Wnt signaling. We will study Axin dephosphorylation and its role in mediating Wnt-regulated Xenopus embryonic patterning. Aim 3 is to study Axin-LRP6 interaction. We will establish a new type of phosphorylation-regulated protein interaction between Axin and LRP6 and uncover how Axin phosphorylation controls its interactions with other partners such as LRP6 via a novel intra- molecular and auto-regulatory mechanism. We will present a cohesive working model that links LRP6 activation to 2-catenin stabilization through regulation of Axin phosphorylation-dephosphorylation. Aim 4 is to study the mechanism by which Wnt activates PP1 dephosphorylation of Axin. We will study how LRP6 regulates PP1 activation using LrpDKO cells, and we are particularly interested in the identification of the kinase (or kinases) that mediates Wnt activation of PP1. These studies will likely provide a comprehensive understanding of Wnt signaling from the Wnt receptor to 2-catenin stabilization. PUBLIC HEALTH RELEVANCE: Cell-to-cell communication is vital for human embryonic development and tissue homeostasis, and is mediated by key "signal transduction" pathways. Defects in these pathways cause human cancer. This proposal aims to understand the molecular nature of one of these signaling pathways, the so-called Wnt pathway, in animal development and human cells. Our study will provide better understanding of human embryonic development and pathogenesis of cancer.
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Wnt Signaling and Vertebrate embryogenesis
  • 批准号:
    10323006
  • 项目类别:
  • 资助金额:
    $73.41万
  • 财政年份:
    2020
  • 负责人:
    Xi He
  • 依托单位:
Wnt Signaling and Vertebrate embryogenesis
  • 批准号:
    10546454
  • 项目类别:
  • 资助金额:
    $73.41万
  • 财政年份:
    2020
  • 负责人:
    Xi He
  • 依托单位:
Wnt Signaling and Vertebrate embryogenesis
  • 批准号:
    10077866
  • 项目类别:
  • 资助金额:
    $73.41万
  • 财政年份:
    2020
  • 负责人:
    Xi He
  • 依托单位:
Wnt Signaling in intestinal stem cells, homeostasis, and cancer
  • 批准号:
    10421293
  • 项目类别:
  • 资助金额:
    $52.14万
  • 财政年份:
    2019
  • 负责人:
    Xi He
  • 依托单位:
海外基金