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Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain

机译:通过采样胰岛素样生长因子II C域的构象空间来探测受体特异性。

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摘要

Insulin and insulin-like growth factors I and II are closely related protein hormones. Their distinct evolution has resulted in different yet overlapping biological functions, with insulin becoming a key regulator of metabolism, while IGF-I/II are major growth factors. Insulin and IGFs cross-bind with different affinities to closely related insulin receptor isoforms A and B (IR-A and IR-B) and IGF-I receptor (IGF-1R). Identification of structural determinants in IGFs and insulin that trigger their specific signaling pathways is of increasing importance in designing receptor specific analogs with potential therapeutic applications. Here, we developed a straightforward protocol for production of recombinant IGF-II and prepared six IGF-II analogs with IGF-I-like mutations. All modified molecules exhibit significantly reduced affinity towards IR-A, particularly the analogs with Pro-Gln insertion in the C-domain. Moreover, one of the analogs has enhanced binding affinity for IGF-1R due to a synergistic effect of the Pro-Gln insertion and Ser29Asn point mutation. Consequently, this analog has almost a 10-fold higher IGF-1R/IR-A binding specificity in comparison with native IGF-II. The established IGF-II purification protocol allowed for a cost-effective isotope labeling required for a detailed NMR structural characterization of IGF-II analogs that revealed a link between the altered binding behavior of selected analogs and conformational rearrangement of their C-domain.
机译:胰岛素和胰岛素样生长因子I和II是密切相关的蛋白激素。它们的独特进化导致不同但重叠的生物学功能,胰岛素成为新陈代谢的关键调节剂,而IGF-I / II是主要的生长因子。胰岛素和IGF以不同的亲和力交叉结合到紧密相关的胰岛素受体同工型A和B(IR-A和IR-B)和IGF-1受体(IGF-1R)。在设计具有潜在治疗应用的受体特异性类似物时,在胰岛素样生长因子和胰岛素中触发其特定信号通路的结构决定簇的鉴定越来越重要。在这里,我们开发了生产重组IGF-II的简单方法,并制备了6个具有IGF-I样突变的IGF-II类似物。所有修饰的分子都表现出对IR-A的亲和力大大降低,特别是在C域中插入Pro-Gln的类似物。此外,由于Pro-Gln插入和Ser29Asn点突变的协同作用,其中一种类似物具有增强的对IGF-1R的结合亲和力。因此,与天然IGF-II相比,该类似物具有近10倍高的IGF-1R / IR-A结合特异性。建立的IGF-II纯化方案可实现对IGF-II类似物进行详细的NMR结构表征所需的具有成本效益的同位素标记,该结构特征揭示了所选类似物的结合行为改变与其C结构域构象重排之间的联系。

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