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通过特定的二硫键交联来收缩非核糖体肽合成酶的可移动载体结构域。

Specific disulfide cross-linking to constrict the mobile carrier domain of nonribosomal peptide synthetases.

作者信息

Tarry Michael J, Schmeing T Martin

机构信息

Department of Biochemistry, McGill University, Montréal, QC, Canada H3G 0B1.

Department of Biochemistry, McGill University, Montréal, QC, Canada H3G 0B1 Groupe de Recherche Axé sur la Structure des Protéines (GRASP), McGill University, Montréal, QC, Canada H3G 0B1

出版信息

Protein Eng Des Sel. 2015 Jun;28(6):163-70. doi: 10.1093/protein/gzv009. Epub 2015 Feb 23.

Abstract

Nonribosomal peptide synthetases are large, multi-domain enzymes that produce peptide molecules with important biological activity such as antibiotic, antiviral, anti-tumor, siderophore and immunosuppressant action. The adenylation (A) domain catalyzes two reactions in the biosynthetic pathway. In the first reaction, it activates the substrate amino acid by adenylation and in the second reaction it transfers the amino acid onto the phosphopantetheine arm of the adjacent peptide carrier protein (PCP) domain. The conformation of the A domain differs significantly depending on which of these two reactions it is catalyzing. Recently, several structures of A-PCP di-domains have been solved using mechanism-based inhibitors to trap the PCP domain in the A domain active site. Here, we present an alternative strategy to stall the A-PCP di-domain, by engineering a disulfide bond between the native amino acid substrate and the A domain. Size exclusion studies showed a significant shift in apparent size when the mutant A-PCP was provided with cross-linking reagents, and this shift was reversible in the presence of high concentrations of reducing agent. The cross-linked protein crystallized readily in several of the conditions screened and the best crystals diffracted to ≈8 Å.

摘要

非核糖体肽合成酶是一类大型的多结构域酶,可产生具有重要生物活性的肽分子,如抗生素、抗病毒、抗肿瘤、铁载体和免疫抑制作用。腺苷化(A)结构域在生物合成途径中催化两个反应。在第一个反应中,它通过腺苷化激活底物氨基酸,在第二个反应中,它将氨基酸转移到相邻肽载体蛋白(PCP)结构域的磷酸泛酰巯基乙胺臂上。A结构域的构象根据其所催化的这两个反应中的哪一个而有显著差异。最近,通过使用基于机制的抑制剂将PCP结构域捕获在A结构域活性位点,已解析了几种A-PCP双结构域的结构。在此,我们提出了一种使A-PCP双结构域停滞的替代策略,即通过在天然氨基酸底物和A结构域之间构建二硫键。尺寸排阻研究表明,当为突变型A-PCP提供交联剂时,表观尺寸有显著变化,并且在高浓度还原剂存在下这种变化是可逆的。交联蛋白在筛选的几种条件下很容易结晶,最佳晶体的衍射分辨率约为8 Å。

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