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CUL7 assembles a non-traditional SCF-like E3 ubiquitin ligase that interacts withp53.

机译:CUL7组装与p53相互作用的非传统SCF样E3泛素连接酶。

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摘要

Selective protein degradation targeted by cullin-ROC1-based E3 ubiquitin ligases plays critical roles in cell biology. Cullins are scaffold proteins that share a C-terminally located cullin domain, essential for interaction with ROC1, a RING finger protein that recruits E2 ubiquitin-conjugating enzymes to cullin-based ligases. CUL1, the best-characterized cullin, utilizes its N-terminus to bind to the small adapter Skp1, which in turn associates with the F-box motif of numerous F-box proteins. Thus, the CUL1 scaffold assembles multi-subunit SCF (S&barbelow;kp1·C&barbelow;UL1·F&barbelow;-box protein·ROC1) complexes, where interchangeable F-box proteins recruit specific phosphorylated substrates for ubiquitination by the ROC-1-bound E2 conjugating enzyme.; Presented here is the identification of CUL7 as a novel ROC1-interacting protein. CUL7 assembles an SCF-like E3 ligase complex consisting of Skp1, CUL7, the Fbx29 F-box protein, and ROC1. In contrast to CUL1, CUL7 is unable to associate with Skp1 alone but specifically recognizes the Skp1·Fbx29 protein module. Additionally CUL7 selectively interacts with Skp1·Fbx29, but not with Skp1·betaTRCP2 or Skp1·Skp2. Therefore, CUL7 may provide a selective scaffold that enables the specific ubiquitination of Fbx29-bound substrates. Moreover, work by others described mouse CUL7 as a pro-apoptotic, SV-40 large T antigen-interacting protein, with a role in vascular and lung development. Collectively, these data suggest that the CUL7 E3 ligase may regulate apoptosis and differentiation, by targeting a specific set of substrates for degradation.; The CUL7 ligase specifically associates with the p53 tumor suppressor and is able to promote its ubiquitination in vitro and in vivo. The CUL7-p53 complex is stable and surprisingly large, suggesting that CUL7 associates with p53 oligomers or with additional proteins, in the cytoplasm. CUL7 utilizes distinct domains to recruit p53 and the Skp1·Fbx29 complex, suggesting that p53 ubiquitination is independent of Fbx29. Thus, the CUL7 complex may act as an E3 for p53, and play a role in regulating the function of this tumor suppressor. Our results further raise the possibility that CUL7 assembles a unique E3 ligase that combines the properties of the SCF with additional F-box-independent mechanisms of substrate ubiquitination.
机译:基于cullin-ROC1的E3泛素连接酶靶向的选择性蛋白质降解在细胞生物学中起着至关重要的作用。 Cullins是共享一个C末端的cullin结构域的支架蛋白,对于与ROC1相互作用至关重要,ROC1是一种将E2泛素结合酶募集到基于cullin的连接酶的RING指蛋白。 CUL1是最有特色的cullin,它利用其N末端与小的衔接子Skp1结合,后者又与众多F-box蛋白的F-box基序相关。因此,CUL1支架组装了多个亚基SCF(S&barbelow; kp1•C&barbelow; UL1•F&barbelow; -box蛋白•ROC1)复合物,其中可互换的F-box蛋白募集了特定的磷酸化底物,以通过ROC-1结合的E2共轭进行泛素化。酶。这里介绍的是鉴定CUL7为新型ROC1相互作用蛋白。 CUL7组装了一个由Skp1,CUL7,Fbx29 F-box蛋白和ROC1组成的SCF样E3连接酶复合物。与CUL1相比,CUL7无法单独与Skp1相关联,但可以特异性识别Skp1·Fbx29蛋白模块。此外,CUL7有选择地与Skp1·Fbx29交互,但不与Skp1·betaTRCP2或Skp1·Skp2交互。因此,CUL7可以提供一种选择性的支架,该支架能够特异性结合Fbx29的底物进行泛素化。此外,其他人的研究将小鼠CUL7描述为促凋亡,SV-40大T抗原相互作用蛋白,在血管和肺部发育中起作用。总的来说,这些数据表明,CUL7 E3连接酶可以通过靶向特定的降解底物来调节细胞凋亡和分化。 CUL7连接酶与p53肿瘤抑制因子特异性结合,并能够在体内和体外促进其泛素化。 CUL7-p53复合物稳定且出乎意料地大,表明CUL7在细胞质中与p53寡聚物或其他蛋白质结合。 CUL7利用不同的域来募集p53和Skp1·Fbx29复合体,表明p53泛素化独立于Fbx29。因此,CUL7复合物可作为p53的E3,并在调节该肿瘤抑制因子的功能中发挥作用。我们的结果进一步提高了CUL7组装独特的E3连接酶的可能性,该酶将SCF的特性与其他F-box独立的底物泛素化机制相结合。

著录项

  • 作者

    Dias, Dora C.;

  • 作者单位

    Mount Sinai School of Medicine of New York University.;

  • 授予单位 Mount Sinai School of Medicine of New York University.;
  • 学科 Biology Molecular.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;生物化学;
  • 关键词

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