Conformational Study of an Artificial Metal-Dependent Regulation Site for Use in Designer Proteins.

IF 1.1 4区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR
Emmanuel Oheix, Neil Spencer, Lee A Gethings, Anna F A Peacock
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引用次数: 0

Abstract

This report describes the dimerisation of glutathione, and by extension, other cysteine-containing peptides or protein fragments, with a 5, 5'-disubstituted-2, 2'-bipyridine or 6, 6"-disubstituted-2, 2':6',2"-terpyridine unit. The resulting bipy-GS2 and terpy-GS2 were investigated as potential metal ion dependent switches in aqueous solution, and were found to predominantly adopt the transoïd conformation at physiological pH. Metal complexation with CuII and ZnII at this pH has been studied by UV/Vis, CD, NMR and ion-mobility mass spectrometry. ZnII titrations are consistent with the formation of a 1:1 ZnII:terpy-GS2 complex at pH 7.4, but bipy-GS2 was shown to form both 1:1 and 1:2 complexes with the former being predominant under dilute micromolar conditions. Formation constants for the resulting 1:1 complexes were determined to be log KM 6.86 (bipy-GS2 ) and 6.22 (terpy-GS2 ), consistent with a higher affinity for the unconstrained bipyridine, compared to the strained terpyridine. CuII coordination involves the initial formation of 1:1 complexes, followed by 1.5Cu:1bipy-GS2 and 2Cu:1terpy-GS2 complexes at micromolar concentrations. Binding constants for formation of the 1:1 complexes (log KM 12.5 (bipy-GS2 ); 8.04 and 7.14 (terpy-GS2 )) indicate a higher affinity for CuII than ZnII. Finally, ion-mobility MS studies detected the free ligands in their protonated form, and were consistent with the formation of two different Cu adducts with different conformations in the gas-phase. We illustrate that the bipyridine and terpyridine dimerisation units can behave like conformational switches in response to Cu/Zn complexation, and propose that in future these can be employed in synthetic biology with larger peptide or protein fragments, to control large scale folding and related biological function.

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用于设计蛋白质的人工金属依赖性调节位点的构象研究
本报告介绍了谷胱甘肽与 5,5'-二取代-2,2'-联吡啶或 6,6"-二取代-2,2':6',2"-三吡啶单元的二聚化,以及其他含半胱氨酸的肽或蛋白质片段的二聚化。研究发现,由此产生的双吡啶-GS2 和三吡啶-GS2 在水溶液中具有依赖金属离子的潜在开关作用,在生理 pH 值下,它们主要采用反式构象。通过紫外/可见光、CD、核磁共振和离子迁移质谱法,研究了在此 pH 值下金属与 CuII 和 ZnII 的络合情况。ZnII 滴定结果表明,在 pH 值为 7.4 时,会形成 1:1 的 ZnII:terpy-GS2 复合物,但双吡-GS2 可形成 1:1 和 1:2 复合物,前者在稀释微摩尔条件下占主导地位。生成的 1:1 复合物的形成常数分别为 log KM 6.86(bipy-GS2)和 6.22(terpy-GS2),这表明与受约束的terpyridine 相比,未受约束的联吡啶具有更高的亲和力。CuII 的配位包括最初形成 1:1 复合物,然后在微摩尔浓度下形成 1.5Cu:1bipy-GS2 和 2Cu:1terpy-GS2 复合物。形成 1:1 复合物的结合常数(log KM 12.5(bipy-GS2);8.04 和 7.14(terpy-GS2))表明 CuII 比 ZnII 具有更高的亲和力。最后,离子迁移质谱研究检测到了质子化形式的游离配体,这与在气相中形成两种不同构象的铜加合物是一致的。我们说明了双吡啶和三吡啶二聚单元在响应铜/锌复合物时可以表现为构象开关,并建议将来可以在合成生物学中使用这些较大的肽或蛋白质片段,以控制大规模折叠和相关的生物功能。
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来源期刊
Zeitschrift fur Anorganische und Allgemeine Chemie
Zeitschrift fur Anorganische und Allgemeine Chemie 化学-无机化学与核化学
CiteScore
2.60
自引率
14.30%
发文量
308
审稿时长
1 months
期刊介绍: ZAAC is an international scientific journal which publishes original papers on new relevant research results from all areas of inorganic chemistry, solid state chemistry, and co-ordination chemistry. The contributions reflect the latest findings in these research areas and serve the development of new materials, such as super-hard materials, electrical superconductors, or intermetallic compounds. Up-to-date physical methods for the characterization of new chemical compounds and materials are also described.
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