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p63 被 E3 连接酶 Itch 识别的机制:研究和抑制这种相互作用的新策略。

Recognition mechanism of p63 by the E3 ligase Itch: novel strategy in the study and inhibition of this interaction.

机构信息

Dipartimento di Scienze e Tecnologie Chimiche, University of Rome Tor Vergata, Rome, Italy.

出版信息

Cell Cycle. 2012 Oct 1;11(19):3638-48. doi: 10.4161/cc.21918. Epub 2012 Aug 30.

DOI:10.4161/cc.21918
PMID:22935697
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3478314/
Abstract

The HECT-containing E3 ubiquitin ligase Itch mediates the degradation of several proteins, including p63 and p73, involved in cell specification and fate. Itch contains four WW domains, which are essential for recognition on the target substrate, which contains a short proline-rich sequence. Several signaling complexes containing these domains have been associated with human diseases such as muscular dystrophy, Alzheimer's or Huntington's diseases. To gain further insight into the structural determinants of the Itch-WW2 domain, we investigated its interaction with p63. We assigned, by 3D heteronuclear NMR experiments, the backbone and side chains of the uniformly (13)C-(15)N-labeled Itch-WW2. In vitro interaction of Itch-WW2 domain with p63 was studied using its interactive p63 peptide, pep63. Pep63 is an 18-mer peptide corresponding to the region from 534-551 residue of p63, encompassing the PPxY motif that interacts with the Itch-WW domains, and we identified the residues involved in this molecular recognition. Moreover, here, a strategy of stabilization of the conformation of the PPxY peptide has been adopted, increasing the WW-ligand binding. We demonstrated that cyclization of pep63 leads to an increase of both the biological stability of the peptide and of the WW-ligand complex. Stable metal-binding complexes of the pep63 have been also obtained, and localized oxidative damage on Itch-WW2 domain has been induced, demonstrating the possibility of use of metal-pep63 complexes as models for the design of metal drugs to inhibit the Itch-WW-p63 recognition in vivo. Thus, our data suggest a novel strategy to study and inhibit the recognition mechanism of Itch E3-ligase.

摘要

HECT 结构域包含的 E3 泛素连接酶 Itch 介导几种蛋白的降解,包括参与细胞特化和命运的 p63 和 p73。Itch 包含四个 WW 结构域,这些结构域对于识别靶底物是必需的,靶底物含有短的脯氨酸丰富序列。含有这些结构域的几个信号复合物与人类疾病有关,如肌肉营养不良、阿尔茨海默病或亨廷顿病。为了更深入地了解 Itch-WW2 结构域的结构决定因素,我们研究了它与 p63 的相互作用。我们通过 3D 异核 NMR 实验,对均匀标记的(13)C-(15)N-Itch-WW2 的骨架和侧链进行了归属。使用其相互作用的 p63 肽 pep63 研究了 Itch-WW2 结构域与 p63 的体外相互作用。Pep63 是一个 18 -mer 肽,对应于 p63 的 534-551 位残基区域,包含与 Itch-WW 结构域相互作用的 PPxY 基序,我们确定了参与这种分子识别的残基。此外,这里采用了稳定 PPxY 肽构象的策略,增加了 WW-配体的结合。我们证明了 pep63 的环化导致肽的生物稳定性和 WW-配体复合物的增加。还获得了 pep63 的稳定金属结合复合物,并诱导了 Itch-WW2 结构域的局部氧化损伤,证明了金属-pep63 复合物作为设计体内抑制 Itch-WW-p63 识别的金属药物模型的可能性。因此,我们的数据表明了一种研究和抑制 Itch E3 连接酶识别机制的新策略。

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本文引用的文献

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