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合理设计的强效抗黏附RGD肽的构象/活性研究

Conformation/activity studies of rationally designed potent anti-adhesive RGD peptides.

作者信息

Gurrath M, Müller G, Kessler H, Aumailley M, Timpl R

机构信息

Organisch-Chemisches Institut, Technische Universität München, Federal Republic of Germany.

出版信息

Eur J Biochem. 1992 Dec 15;210(3):911-21. doi: 10.1111/j.1432-1033.1992.tb17495.x.

Abstract

The Arg-Gly-Asp (RGD) sequence is a universal cell-recognition site of various extracellular proteins that interact with integrin cell-surface receptors. In order to design low-molecular-mass RGD protein antagonists, the determination of the biologically active conformation is a prerequisite. We present a method that yields detailed insight into the steric factors which govern the binding of the ligands to their receptors by systematically scanning the conformational space accessible for the tripeptide sequence RGD. The investigation is based on the conformationally controlled design of homodetic cyclic oligopeptides and their structural determination, coupled with biological assays. For this purpose, a whole set of cyclic pentapeptides and hexapeptides has been synthesized and their three-dimensional structures in solution analyzed by modern two-dimensional NMR techniques in combination with restrained and free molecular dynamics simulations. Their biological activity was compared with that of linear GRGDS in inhibition assays of tumor cell adhesion to laminin P1 and vitronectin substrates. An up to 100-fold, and in part selective, increase in activity was observed for two cyclic pentapeptides. Most other peptides showed a decreased activity which, however, was useful to correlate activity with rather small variations in conformation. Detailed comparative studies of the systematically designed conformations and the corresponding anti-adhesive activities offer an access to lead structures for a rational indirect drug design of peptide and peptidomimetic pharmaceuticals with strong interfering activity for integrin-mediated cell-cell and cell-matrix interactions.

摘要

精氨酸-甘氨酸-天冬氨酸(RGD)序列是各种与整联蛋白细胞表面受体相互作用的细胞外蛋白的通用细胞识别位点。为了设计低分子量的RGD蛋白拮抗剂,确定其生物活性构象是一个先决条件。我们提出了一种方法,通过系统地扫描三肽序列RGD可及的构象空间,深入了解控制配体与受体结合的空间因素。该研究基于同型环寡肽的构象控制设计及其结构测定,并结合生物学分析。为此,合成了一整套环五肽和环六肽,并通过现代二维核磁共振技术结合受限和自由分子动力学模拟分析了它们在溶液中的三维结构。在肿瘤细胞黏附于层粘连蛋白P1和玻连蛋白底物的抑制试验中,将它们的生物活性与线性GRGDS的活性进行了比较。观察到两种环五肽的活性提高了100倍,且部分具有选择性。大多数其他肽的活性降低,然而,这有助于将活性与构象的微小变化相关联。对系统设计的构象和相应的抗黏附活性进行详细的比较研究,为合理间接设计具有强干扰整联蛋白介导细胞间和细胞与基质相互作用活性的肽和拟肽药物提供了先导结构。

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