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Structural and functional analysis of type I TGF-beta receptor regulation.

机译:I型TGF-β受体调节的结构和功能分析。

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摘要

The type I TGFβ receptor (TβR-I) is a transmembrane serine/threonine kinase of central importance to eukaryotic growth and homeostasis. TβR-I is activated by multiple phosphorylation of the GS region, a conserved juxtamembrane segment located just N-terminal to the protein kinase domain in the cytoplasmic portion of the receptor. In this thesis, I describe structural and biochemical studies aimed at understanding the molecular basis of TβR-I regulation by the GS region. The crystal structure of the unphosphorylated cytoplasmic portion of TβR-I containing both the GS region and the catalytic domain, has been determined in complex with the FK506-binding protein FKBP12, which binds to the GS region an inhibits TGFβ signaling. (TβR-I) adopts a catalytically inactive conformation in this structure that is maintained, in part, by the unphosphorylated GS region. FKBP12 binds to the GS region, capping the activating phosphorylation sites and further stabilizing the inhibited conformation of TβR-I The crystal structure of TβR-I has also been solved in the absence of FKBP12. This structure reveals that certain portions of the GS region are intrinsically unstable, and require FKBP12 to mold them into an inhibitory conformation. In order to better understand the molecular mechanism of TβR-I activation, a novel semisynthetic approach was employed to produce a homogeneously tetraphosphorylated form of TβR-I which was used in biochemical studies. Phosphorylation of the GS region dramatically enhances the specificity of TβR-I for the critical C-terminal serine residues of its physiological substrate, Smad2. In addition, tetraphosphorylated TβR-I is specifically bound by Smad2 in a phosphorylation dependent manner, but is no longer recognized by FKBP12. Thus, phosphorylation activates TβR-I by switching the GS region from a docking site for an inhibitor into part of a docking site for substrate. These observations suggest that phosphoserine/phosphothreonine dependent localization is a key feature of the TβR-I activation process.
机译:I型TGFβ受体(TβR-1)是跨膜丝氨酸/苏氨酸激酶,对真核生物的生长和体内稳态至关重要。 TβR-1通过GS区的多重磷酸化而激活,GS区是位于受体胞质部分中蛋白激酶结构域N端正对端的保守近膜片段。在本文中,我描述了旨在了解GS区TβR-1调控分子基础的结构和生化研究。已经与FK506结合蛋白FKBP12复合地确定了同时含有GS区和催化结构域的TβR-1的非磷酸化胞质部分的晶体结构,该结合蛋白与KB区结合并抑制TGFβ信号传导。 (TβR-1)在该结构中采用催化惰性构象,该构象部分地由未磷酸化的GS区维持。 FKBP12结合到GS区,覆盖活化的磷酸化位点并进一步稳定TβR-1的受抑制构象。在没有FKBP12的情况下,TβR-1的晶体结构也已被解决。这种结构表明,GS区的某些部分本质上是不稳定的,需要FKBP12将它们模制成抑制性构象。为了更好地理解TβR-1活化的分子机制,采用了一种新型的半合成方法来生产TβR-1的均四磷酸化形式,该形式已用于生化研究。 GS区的磷酸化显着增强了TβR-1对其生理底物Smad2的关键C端丝氨酸残基的特异性。另外,四磷酸化的TβR-1以磷酸化依赖性方式被Smad2特异性结合,但不再被FKBP12识别。因此,磷酸化通过将GS区从抑制剂的对接位点转换成底物对接位点的一部分来激活TβR-1。这些观察结果表明磷酸丝氨酸/磷酸苏氨酸依赖的定位是TβR-1活化过程的关键特征。

著录项

  • 作者

    Huse, Morgan Andrew.;

  • 作者单位

    The Rockefeller University.;

  • 授予单位 The Rockefeller University.;
  • 学科 Biophysics General.; Biology Molecular.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;分子遗传学;
  • 关键词

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