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一种设计用来模拟蛋白 P 环巢的合成六肽被证明可以结合无机磷酸。

A synthetic hexapeptide designed to resemble a proteinaceous P-loop nest is shown to bind inorganic phosphate.

机构信息

Department of Chemistry Ugo Schiff, University of Firenze, 50019 Sesto Fiorentino, Italy.

出版信息

Proteins. 2012 May;80(5):1418-24. doi: 10.1002/prot.24038. Epub 2012 Mar 1.

Abstract

The hexapeptide Ser-Gly-Ala-Gly-Lys-Thr has been synthesized and characterized. It was designed as a minimal soluble peptide that would be likely to have the phosphate-binding properties observed in the P-loops of proteins that bind the β-phosphate of GTP or ATP. The β-phosphate in such proteins is bound by a combination of the side chain ε-amino group of the lysine residue plus the concavity formed by successive main chain peptide NH groups called a nest, which is favored by the glycines. The hexapeptide is shown to bind HPO(4) (2-) strongly at neutral pH. The affinities of the various ionized species of phosphate and hexapeptide are analyzed, showing that they increase with pH. It is likely the main chain NH groups of the hexapeptide bind phosphate in much the same way as the corresponding P-loop atoms bind the phosphate ligand in proteins. Most proteinaceous P-loops are situated at the N-termini of α-helices, and this observation has frequently been considered a key aspect of these binding sites. Such a hexapeptide in isolation seems unlikely to form an α-helix, an expectation in accord with the CD spectra examined; this suggests that being at the N-terminus of an α-helix is not essential for phosphate binding. An unexpected finding about the hexapeptide-HPO(4) (2-) complex is that the side chain ε-amino group of the lysine occurs in its deprotonated form, which appears to bind HPO(4) (2-) via an N···H-O-P hydrogen bond.

摘要

已合成并表征了六肽 Ser-Gly-Ala-Gly-Lys-Thr。它被设计为一种最小的可溶性肽,很可能具有在结合 GTP 或 ATP β-磷酸的蛋白质的 P 环中观察到的磷酸结合特性。这种蛋白质中的β-磷酸通过赖氨酸残基的侧链 ε-氨基加连续主链肽 NH 基团形成的凹腔(称为巢)的组合结合,甘氨酸有利于这种组合。该六肽在中性 pH 下强烈结合 HPO(4) (2-)。分析了各种离子化的磷酸和六肽的亲和力,表明它们随 pH 值增加而增加。六肽的主链 NH 基团很可能以与蛋白质中相应 P 环原子结合磷酸配体相同的方式结合磷酸。大多数蛋白质 P 环位于 α-螺旋的 N 末端,这一观察结果经常被认为是这些结合位点的一个关键方面。这种孤立的六肽似乎不太可能形成 α-螺旋,这一预期与所检查的 CD 光谱一致;这表明位于 α-螺旋的 N 末端对于磷酸结合不是必需的。关于六肽-HPO(4) (2-)复合物的一个意外发现是,赖氨酸的侧链 ε-氨基以去质子化形式存在,它似乎通过 N···H-O-P 氢键结合 HPO(4) (2-)。

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