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鉴定富含脯氨酸的核受体共激活因子 PNRC 和 PNRC2 衍生的多脯氨酸 II 区:对 ERα 共激活因子相互作用的新认识。

Identification of polyproline II regions derived from the proline-rich nuclear receptor coactivators PNRC and PNRC2: new insights for ERα coactivator interactions.

机构信息

Laboratoire des BioMolécules (LBM), CNRS - UMR 7203, Ecole Normale Supérieure / Université Pierre et Marie Curie 24, rue Lhomond, 75231, Paris Cedex 05, France; Fondation Pierre-Gilles de Gennes pour la Recherche, 29, rue d'Ulm, 75005, Paris, France.

出版信息

Chirality. 2013 Oct;25(10):628-42. doi: 10.1002/chir.22188. Epub 2013 Aug 8.

Abstract

Protein-protein interactions are crucial for signal transductions required for cell differentiation and proliferation. Their modulation is therefore key to the development of therapeutic alternatives, particularly in the context of cancer. According to literature data, the polyproline-rich nuclear receptor coactivators PNRC and PNRC2 interact with estrogen receptor (ERα) through their PxxP SH3-binding motifs. In a search to identify the molecular features governing this interaction, we explored using electronic circular dichroism (ECD) spectroscopy and molecular dynamics (MD) calculations, the capacity of a range of putative biologically active peptides derived from these proteins and containing this PxxP motif(s) to form polyproline II (PPII) domains. An additional more exhaustive structural study on a lead PPII peptide was also performed using 2D nuclear magnetic resonance (NMR) spectroscopy. With the exception of one of all the investigated peptides (PNRC-D), binding assays failed to detect any affinity for Grb2 SH3 domains, suggesting that PPII motifs issued from Grb2 antagonists have a binding mode distinct from those derived from Grb2 agonists. Instead, the peptides revealed a competitive binding ability against a synthetic peptide (ERα17p) with a putative PPII-cognate domain located within a coregulator recruitment region of ERα (AF-2 site). Our work, which constitutes the first structure-related interaction study concerning PNRC and PNRC2, supports not only the existence of PxxP-induced PPII sequences in these coregulators, but also confirms the presence of a PPII recognition site in the AF-2 of the steroid receptor ERα, a region important for transcription regulation.

摘要

蛋白质-蛋白质相互作用对于细胞分化和增殖所需的信号转导至关重要。因此,它们的调节是开发治疗替代方法的关键,尤其是在癌症的背景下。根据文献数据,富含多脯氨酸的核受体共激活子 PNRC 和 PNRC2 通过其 PxxP SH3 结合基序与雌激素受体 (ERα) 相互作用。为了寻找控制这种相互作用的分子特征,我们使用电子圆二色性 (ECD) 光谱和分子动力学 (MD) 计算探索了这些蛋白质衍生的一系列假定具有生物活性的肽,这些肽含有该 PxxP 基序(s),以形成多脯氨酸 II (PPII) 结构域。还使用二维核磁共振 (NMR) 光谱对一个潜在的 PPII 肽进行了更详尽的结构研究。除了所有研究肽中的一个(PNRC-D)外,结合测定未能检测到任何与 Grb2 SH3 结构域的亲和力,这表明源自 Grb2 拮抗剂的 PPII 基序具有与源自 Grb2 激动剂的不同的结合模式。相反,这些肽显示出与合成肽 (ERα17p) 的竞争结合能力,该肽具有位于 ERα 共激活子募集区域(AF-2 位点)内的假定 PPII 同源结构域。我们的工作首次对 PNRC 和 PNRC2 进行了结构相关的相互作用研究,不仅支持这些共激活子中存在 PxxP 诱导的 PPII 序列,而且还证实了甾体受体 ERα 的 AF-2 中存在 PPII 识别位点,该区域对于转录调节很重要。

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