Targeting of interleukin-10 receptor by a potential human interleukin-10 peptide efficiently blocks interleukin-10 pathway-dependent cell proliferation.

Ci ji yi xue za zhi = Tzu-chi medical journal Pub Date : 2020-01-17 eCollection Date: 2020-07-01 DOI:10.4103/tcmj.tcmj_237_19
Chun-Chun Chang, Cheng-Der Liu, Sheng-Feng Pan, Wei-Han Huang, Chih-Wen Peng, Hao-Jen Hsu
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Abstract

Objective: Human interleukin-10 (IL-10) is a dimeric and pleiotropic cytokine that plays a crucial role in cellular immunoregulatory responses. As IL-10 binds to its receptors, IL-10Ra and IL-10Rb, it will suppress or induce the downstream cellular immune responses to protect from diseases.

Materials and methods: In this study, a potential peptide derived from IL-10 based on molecular docking and structural analysis was designed and validated by a series of cell assays to block IL-10 binding to receptor IL-10Ra for the inhibition of cell growth.

Results: The simulation results indicate that the designed peptide IL10NM25 bound to receptor IL-10Ra is dominated by electrostatic interactions, whereas van der Waals (VDW) and hydrophobic interactions are minor. The cell experiments showed that IL10NM25 specifically binds to receptor IL-10Ra on the cell surface of two B-lineage cell lines, B lymphoma derived (BJAB), and lymphoblastoid cell line, whereas the mutant and scramble peptides are not able to suppress the binding of IL-10 to receptor IL-10Ra, consistent with the molecular simulation predictions.

Conclusion: This study demonstrates that structure-based peptide design can be effective in the development of peptide drug discovery.

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用一种潜在的人类白细胞介素-10 多肽靶向白细胞介素-10 受体,可有效阻断白细胞介素-10 途径依赖性细胞增殖。
目的:人白细胞介素-10(IL-10)是一种二聚体和多效性细胞因子,在细胞免疫调节反应中起着至关重要的作用。IL-10与其受体IL-10Ra和IL-10Rb结合后,会抑制或诱导下游细胞免疫反应,从而保护人体免受疾病的侵害:本研究在分子对接和结构分析的基础上,设计了一种来自 IL-10 的潜在多肽,并通过一系列细胞实验验证了该多肽能阻断 IL-10 与受体 IL-10Ra 的结合,从而抑制细胞生长:模拟结果表明,所设计的多肽IL10NM25与受体IL-10Ra的结合以静电相互作用为主,而范德华(VDW)和疏水相互作用为辅。细胞实验表明,IL10NM25能特异性地与两种B系细胞系(B淋巴瘤衍生细胞系(BJAB)和类淋巴母细胞系)细胞表面的受体IL-10Ra结合,而突变肽和扰乱肽不能抑制IL-10与受体IL-10Ra的结合,这与分子模拟预测一致:本研究表明,基于结构的多肽设计可以有效地开发多肽药物。
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