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通过用 D-氨基酸替代甘氨酸来提高肽配体的结合亲和力和稳定性。

Improving binding affinity and stability of peptide ligands by substituting glycines with D-amino acids.

机构信息

Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne, BCH 5305 (Batochime), Avenue Forel 2, 1015 Lausanne, Switzerland.

出版信息

Chembiochem. 2013 Jul 22;14(11):1316-22. doi: 10.1002/cbic.201300228. Epub 2013 Jul 4.

Abstract

Improving the binding affinity and/or stability of peptide ligands often requires testing of large numbers of variants to identify beneficial mutations. Herein we propose a type of mutation that promises a high success rate. In a bicyclic peptide inhibitor of the cancer-related protease urokinase-type plasminogen activator (uPA), we observed a glycine residue that has a positive ϕ dihedral angle when bound to the target. We hypothesized that replacing it with a D-amino acid, which favors positive ϕ angles, could enhance the binding affinity and/or proteolytic resistance. Mutation of this specific glycine to D-serine in the bicyclic peptide indeed improved inhibitory activity (1.75-fold) and stability (fourfold). X-ray-structure analysis of the inhibitors in complex with uPA showed that the peptide backbone conformation was conserved. Analysis of known cyclic peptide ligands showed that glycine is one of the most frequent amino acids, and that glycines with positive ϕ angles are found in many protein-bound peptides. These results suggest that the glycine-to-D-amino acid mutagenesis strategy could be broadly applied.

摘要

提高肽配体的结合亲和力和/或稳定性通常需要测试大量变体以鉴定有益的突变。在此,我们提出了一种有望获得高成功率的突变类型。在一种环肽抑制剂中,该抑制剂靶向与癌症相关的蛋白酶尿激酶型纤溶酶原激活剂(uPA),我们观察到一个当与靶标结合时具有正ϕ二面角的甘氨酸残基。我们假设用有利于正ϕ角的 D-氨基酸取代它,可以增强结合亲和力和/或抗蛋白水解能力。在环肽中将该特定甘氨酸突变为 D-丝氨酸确实提高了抑制活性(1.75 倍)和稳定性(4 倍)。与 uPA 复合物的抑制剂的 X 射线结构分析表明,肽骨架构象得以保留。对已知的环状肽配体的分析表明,甘氨酸是最常见的氨基酸之一,并且在许多与蛋白结合的肽中发现了具有正ϕ角的甘氨酸。这些结果表明,甘氨酸至 D-氨基酸的诱变策略可能具有广泛的应用。

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