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Structure-Based Design Synthesis and Bioactivity of a New Anti-TNFα Cyclopeptide

机译:一种新型抗TNFα环肽的结构设计合成和生物活性

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摘要

As opposed to small molecules, macrocyclic peptides possess a large surface area and are recognised as promising candidates to selectively treat diseases by disrupting specific protein–protein interactions (PPIs). Due to the difficulty in predicting cyclopeptide conformations in solution, the de novo design of bioactive cyclopeptides remains significantly challenging. In this study, we used the combination of conformational analyses and molecular docking studies to design a new cyclopeptide inhibitor of the interaction between the human tumour necrosis factor alpha (TNFα) and its receptor TNFR-1. This interaction is a key in mediating the inflammatory response to tissue injury and infection in humans, and it is also an important causative factor of rheumatoid arthritis, psoriasis and inflammatory bowel disease. The solution state NMR structure of the cyclopeptide was determined, which helped to deduce its mode of interaction with TNFα. TNFα sensor cells were used to evaluate the biological activity of the peptide.
机译:与小分子相反,大环肽具有较大的表面积,被认为是通过破坏特定的蛋白质-蛋白质相互作用(PPI)选择性治疗疾病的有希望的候选者。由于难以预测溶液中的环肽构象,因此生物活性环肽的从头设计仍然具有很大的挑战性。在这项研究中,我们结合了构象分析和分子对接研究,设计了一种新的环肽抑制剂来抑制人类肿瘤坏死因子α(TNFα)及其受体TNFR-1之间的相互作用。这种相互作用是介导人类对组织损伤和感染的炎症反应的关键,也是风湿性关节炎,牛皮癣和炎症性肠病的重要病因。确定了环肽的溶液状态NMR结构,这有助于推断其与TNFα的相互作用方式。 TNFα传感器细胞用于评估该肽的生物学活性。

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