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利用噬菌体展示、饱和突变和计算建模发现和描述趋化因子网络抑制剂。

Discovery and pharmacophoric characterization of chemokine network inhibitors using phage-display, saturation mutagenesis and computational modelling.

机构信息

Wellcome Centre for Human Genetics and RDM Cardiovascular Medicine, University of Oxford, Roosevelt Drive, Oxford, OX3 7BN, UK.

Department of Statistics, University of Oxford, 24-29 St Giles, Oxford, OX1 3LB, UK.

出版信息

Nat Commun. 2023 Sep 16;14(1):5763. doi: 10.1038/s41467-023-41488-z.

Abstract

CC and CXC-chemokines are the primary drivers of chemotaxis in inflammation, but chemokine network redundancy thwarts pharmacological intervention. Tick evasins promiscuously bind CC and CXC-chemokines, overcoming redundancy. Here we show that short peptides that promiscuously bind both chemokine classes can be identified from evasins by phage-display screening performed with multiple chemokines in parallel. We identify two conserved motifs within these peptides and show using saturation-mutagenesis phage-display and chemotaxis studies of an exemplar peptide that an anionic patch in the first motif and hydrophobic, aromatic and cysteine residues in the second are functionally necessary. AlphaFold2-Multimer modelling suggests that the peptide occludes distinct receptor-binding regions in CC and in CXC-chemokines, with the first and second motifs contributing ionic and hydrophobic interactions respectively. Our results indicate that peptides with broad-spectrum anti-chemokine activity and therapeutic potential may be identified from evasins, and the pharmacophore characterised by phage display, saturation mutagenesis and computational modelling.

摘要

CC 和 CXC 趋化因子是炎症趋化作用的主要驱动因素,但趋化因子网络的冗余性阻碍了药物干预。蜱 evasin 随意结合 CC 和 CXC 趋化因子,克服了冗余性。在这里,我们通过使用多种趋化因子平行进行噬菌体展示筛选,表明可以从 evasin 中鉴定出随意结合这两类趋化因子的短肽。我们在这些肽中鉴定出两个保守基序,并通过饱和诱变噬菌体展示和趋化性研究一个示例肽表明,第一个基序中的阴离子斑和第二个基序中的疏水性、芳香性和半胱氨酸残基在功能上是必需的。AlphaFold2-Multimer 建模表明,该肽可封闭 CC 和 CXC 趋化因子中独特的受体结合区域,第一个和第二个基序分别贡献离子和疏水性相互作用。我们的研究结果表明,可能从 evasin 中鉴定出具有广谱抗趋化因子活性和治疗潜力的肽,并且可以通过噬菌体展示、饱和诱变和计算建模来表征药效团。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe2/10505172/6d86bb8097dc/41467_2023_41488_Fig1_HTML.jpg

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