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人白细胞介素 3 与其α受体相互作用的构象和结合模式评估。

Conformational and binding mode assessment of the human IL-3 recognition by its alpha receptor.

机构信息

Université Paris Cité and Université des Antilles and Université de la Réunion, INSERM, Biologie Intégrée du Globule Rouge, UMR_S 1134, DSIMB, Paris, France.

出版信息

Proteins. 2023 Jul;91(7):904-919. doi: 10.1002/prot.26476. Epub 2023 Feb 15.

Abstract

Protein-protein interactions (PPIs) are attractive targets as they are critical in a variety of biological processes and pathologies. As an illustration, the interleukin 3 (IL-3) and its α subunit receptor (IL-3Rα) are two proteins belonging to the cytokine or receptor βc family and are involved in several disorders like inflammatory diseases or hematological malignancies. This PPI exhibits a low binding affinity and a complex formed by a mutant form of IL-3 (superkine) and IL-3Rα have emerged from the literature, with an increase of the affinity. Therefore, in this study, we performed molecular dynamics simulations and binding energy calculation in order to evaluate protein dynamics and to characterize the main interactions between IL-3 and IL-3Rα, considering both wild-type and mutant. First, in the case of IL-3Rα/IL-3 wild-type complex, IL-3Rα can adopt three different conformations essentially driven by NTD domain, including the open and closed conformations, previously observed in crystal structures. Additionally, our results reveal a third conformation that has a distinct interaction profile that the others. Interestingly, these conformational changes are attenuated in IL-3Rα/IL-3 mutant complex. Then, we highlighted the contribution of different residues which interact principally with IL-3 or IL-3Rα conserved region. As for the mutated residue at position 135 of IL-3, other residues such as IL-3 E138, IL-3 D40, IL-3Rα Y279, IL-3Rα K235, or IL-3Rα R277 seem important for a low or a high binding affinity. Altogether these findings yield new information that could be exploited in a drug discovery process.

摘要

蛋白质-蛋白质相互作用(PPIs)是很有吸引力的靶点,因为它们在各种生物过程和病理中都很关键。例如,白细胞介素 3(IL-3)及其α亚基受体(IL-3Rα)是两种属于细胞因子或受体βc 家族的蛋白质,它们与几种疾病有关,如炎症性疾病或血液恶性肿瘤。这种 PPI 的结合亲和力较低,文献中出现了一种由 IL-3(超激酶)的突变形式和 IL-3Rα形成的复合物,其亲和力增加。因此,在这项研究中,我们进行了分子动力学模拟和结合能计算,以评估蛋白质动力学,并对 IL-3 和 IL-3Rα之间的主要相互作用进行特征描述,同时考虑野生型和突变型。首先,在 IL-3Rα/IL-3 野生型复合物的情况下,IL-3Rα可以采用三种不同的构象,主要由 NTD 结构域驱动,包括以前在晶体结构中观察到的开放和关闭构象。此外,我们的结果揭示了第三种构象,它具有与其他构象不同的相互作用模式。有趣的是,这些构象变化在 IL-3Rα/IL-3 突变体复合物中减弱。然后,我们强调了不同残基的贡献,这些残基与 IL-3 或 IL-3Rα 的保守区域主要相互作用。至于 IL-3 位置 135 的突变残基,其他残基,如 IL-3 E138、IL-3 D40、IL-3Rα Y279、IL-3Rα K235 或 IL-3Rα R277,似乎对低或高结合亲和力很重要。总的来说,这些发现提供了新的信息,可在药物发现过程中加以利用。

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