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中文摘要
翻译
Wnt通路是一条进化保守的信号通路,存在于从果蝇到人类的后生动物中。WNT信号已被证明在发育中发挥重要作用。鉴于Wnt途径与多种人类疾病的发生有关(例如,超过90%的结直肠癌),人们正加紧努力开发针对该途径的治疗方法。不幸的是,部分原因是我们对Wnt信号转导的详细机制了解不完全,针对这一途径的治疗进展缓慢,目前还没有Wnt抑制剂用于临床。我们的首要目标是了解Wnt信号传播的基本生化机制,以最终协调组织、器官和肢体的形成,并了解其错误调控如何导致疾病状态。在十多年的时间里,我的实验室1)开发了第一个概括了Wnt途径关键反应的生化系统(非洲爪哇卵提取物),2)开发了第一个Wnt途径的数学模型(Lee-Heinrich模型),3)为涉及受体介导的细胞质信号传递(通过直接抑制GSK3活性)的机制提供了证据,以及4)鉴定了一种Wnt途径的小分子抑制剂,该抑制剂已被FDA指定为治疗家族性癌前疾病(家族性腺瘤性息肉病)的孤儿药物。我们最近资助的工作集中在1)我们新提出的模型,描述了Wnt转录共激活因子β-catenin如何通过E3连接酶XIAP促进的过程与辅阻遏子Gro/Tle竞争结合转录因子Tcf/Lef;以及2)新发现的一种机制,即失去APC肿瘤抑制因子导致Wnt细胞表面受体的激活。对于Mira Grant的应用,我建议通过以下方式扩展这些研究:1)确定APC调节受体激活的分子机制,特别是囊泡运输在这一过程中的作用;2)研究与XIAP相互作用促进-连环蛋白介导的Wnt信号转导的脱辅酶USP47。我们已经进行了几次基因组规模的筛选,以确定新的Wnt途径基因。在这些筛选结果的基础上,我建议研究1)涉及跨膜和囊泡运输蛋白:Ar14c、ITSN1、Syndecan-2和CDH13的Wnt信号体的形成,2)USP46/UAF1/WDR20去泛素酶复合体对Wnt受体的稳态,以及3)核激酶STK38对Wnt基因转录的调控。
英文摘要
The Wnt pathway is an evolutionarily conserved signaling pathway present in metazoans from Drosophila to humans. Wnt signaling has been shown to play important roles in development. Given that the Wnt pathway is involved in the genesis of a wide variety of human diseases (e.g., over 90% of all colorectal cancers), there is an intense effort to develop therapeutics that target this pathway. Unfortunately, in part due to our incomplete understanding of the detailed mechanism of Wnt signal transduction, progress in developing therapeutics that target this pathway has been slow, and no Wnt inhibitors are currently in clinical use. Our overarching goal is to understand the basic biochemical mechanisms by which a Wnt signal is propagated to ultimately coordinate the formation of tissues, organs, and limbs and to understand how its misregulation can lead to disease states. In over more than a decade, my laboratory has 1) developed the first biochemical system (Xenopus egg extract) that recapitulated key reactions of the Wnt pathway, 2) developed the first mathematical model (Lee- Heinrich model) of the Wnt pathway, 3) provided evidence for a mechanism involving receptor-mediated signaling (via direct inhibition of GSK3 activity) to the cytoplasm, and 4) identified a small molecule inhibitor of the Wnt pathway that has been designated by the FDA as an orphan drug for a familial precancerous disease (familial adenomatous polyposis). Our recently funded work focuses on 1) our newly proposed model describing how β-catenin, a Wnt transcriptional coactivator, competes with the corepressor Gro/TLE for binding to the transcriptional factor, TCF/LEF, via a process facilitated by the E3 ligase XIAP and 2) a newly identified mechanism by which loss of the APC tumor suppressor leads to activation of Wnt cell surface receptors. For the MIRA grant application, I propose to extend these studies by 1) determining the molecular mechanism by which APC regulates receptor activation, specifically the role of vesicle transport in this process, and 2) pursuing the characterization of a deubiqutinase, USP47, which interacts with XIAP to promote -catenin-mediated Wnt signaling. We have undertaken several genome-scale screens to identify new Wnt pathway genes. Based on the results of these screens, I propose to study 1) Wnt signalosome formation involving the transmembrane and vesicular transport proteins: Arl4c, ITSN1, Syndecan-2, and Cdh13, 2) Wnt receptor homeostasis by the USP46/UAF1/WDR20 deubiquitinase complex, and 3) regulation of Wnt gene transcription by the nuclear kinase STK38.
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Maximizing Investigators' Research Award (R35 - Clinical Trial Optional)
  • 批准号:
    10402163
  • 项目类别:
  • 资助金额:
    $56.27万
  • 财政年份:
    2017
  • 负责人:
    ETHAN LEE
  • 依托单位:
Mechanism of Wnt signal transduction
  • 批准号:
    9519127
  • 项目类别:
  • 资助金额:
    $21.25万
  • 财政年份:
    2017
  • 负责人:
    ETHAN LEE
  • 依托单位:
Maximizing Investigators' Research Award (R35 - Clinical Trial Optional)
  • 批准号:
    10791528
  • 项目类别:
  • 资助金额:
    $9.41万
  • 财政年份:
    2017
  • 负责人:
    ETHAN LEE
  • 依托单位:
Maximizing Investigators' Research Award (R35 - Clinical Trial Optional)
  • 批准号:
    10596608
  • 项目类别:
  • 资助金额:
    $56.27万
  • 财政年份:
    2017
  • 负责人:
    ETHAN LEE
  • 依托单位: