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基于结构的粒细胞巨噬细胞集落刺激因子(GM-CSF)模拟物设计。

Structure-based design of mimetics for granulocyte-macrophage colony stimulating factor (GM-CSF).

作者信息

Monfardini Cristina, Canziani Gabriela, Plugariu Carmela, Kieber-Emmons Thomas, Godillot A Paul, Kwah Joann, Bajgier Joanna, Chaiken Irwin, Williams William V

机构信息

GlaxoSmithKline Pharmaceuticals, 51 North 39th Street, Philadelphia, PA 19104, USA.

出版信息

Curr Pharm Des. 2002;8(24):2185-99. doi: 10.2174/1381612023393198.

Abstract

Granulocyte-macrophage colony stimulating factor (GM-CSF) activity has been linked to pro-inflammatory effects in autoimmune syndromes, such as rheumatoid arthritis. Thus GM-CSF mimetics with antagonist activity might play a therapeutic role in these diseases. The human GM-CSF core structure consists of a four alpha-helix bundle, and GM-CSF activity is controlled by its binding to a two-subunit receptor. A number of residues located on the B and C helices of GM-CSF are postulated to interact with the alpha chain of the GM-CSF receptor (GM-CSFR). Several approaches have been successfully utilized to develop peptide mimetics of this site, including peptides from the native sequence, a peptide derived from a recombinant antibody (rAb) light chain which mimicked GM-CSF receptor binding activity, and structurally guided de novo design. Analysis of the rAb light chain had suggested mimicry of GM-CSF with residues mostly contributed by the CDR I region. Key residues involved in CDR I peptide/GM-CSFR binding were identified by truncation and alteration of individual residues, while the structural elements required to antagonize the biological action of GM-CSF were separately tested in binding and inhibitory activity assays of multiple cyclic analogues. A peptide designed to retain the loop conformation of the CDR I region of the rAb light chain competed with GM-CSF for both antibody and receptor binding, but the role of specific residues in antibody versus receptor binding differed markedly. These studies suggest that structural analysis of peptide mimetics can reveal differences in receptor and antibody binding, perhaps including key interactions that impact binding kinetics. Peptide mimetics of other four-helix bundle cytokines are reviewed, including helical and reverse turn mimetics of helical structures. Use of peptide mimetics coupled with structural and kinetic analysis provides a powerful approach to identifying important receptor-ligand interactions, which implications for rational design of novel therapeutics.

摘要

粒细胞-巨噬细胞集落刺激因子(GM-CSF)的活性与自身免疫综合征(如类风湿性关节炎)中的促炎作用有关。因此,具有拮抗活性的GM-CSF模拟物可能在这些疾病中发挥治疗作用。人GM-CSF的核心结构由一个四α-螺旋束组成,GM-CSF的活性通过其与双亚基受体的结合来控制。推测GM-CSF的B和C螺旋上的一些残基与GM-CSF受体(GM-CSFR)的α链相互作用。已经成功地采用了几种方法来开发该位点的肽模拟物,包括来自天然序列的肽、源自重组抗体(rAb)轻链的模拟GM-CSF受体结合活性的肽,以及结构导向的从头设计。对rAb轻链的分析表明,GM-CSF的模拟主要由互补决定区I(CDR I)区域的残基贡献。通过截断和改变单个残基来鉴定参与CDR I肽/GM-CSFR结合的关键残基,同时在多个环状类似物的结合和抑制活性测定中分别测试拮抗GM-CSF生物学作用所需的结构元件。设计用于保留rAb轻链CDR I区域环构象的肽与GM-CSF竞争抗体和受体结合,但特定残基在抗体与受体结合中的作用明显不同。这些研究表明,肽模拟物的结构分析可以揭示受体和抗体结合的差异,可能包括影响结合动力学的关键相互作用。本文综述了其他四螺旋束细胞因子的肽模拟物,包括螺旋结构的螺旋和反向转角模拟物。肽模拟物与结构和动力学分析的结合使用为鉴定重要的受体-配体相互作用提供了一种强大的方法,这对新型治疗药物的合理设计具有重要意义。

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