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通过用其等结构类似物取代组氨酸配体来调节天青蛋白中 I 型铜中心的还原电位。

Tuning reduction potentials of type 1 copper center in azurin by replacing a histidine ligand with its isostructural analogues.

机构信息

Center of Biophysics and Quantitative Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, United States.

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, United States.

出版信息

J Inorg Biochem. 2022 Sep;234:111863. doi: 10.1016/j.jinorgbio.2022.111863. Epub 2022 May 20.

Abstract

Type 1 copper proteins have a conserved ligand set of one cysteine and two histidines, with many proteins, such as azurin, also containing an axial methionine. While the cysteine and methionine in azurin have been replaced with their respective isostructural analogues of unnatural amino acids to reveal their roles in tuning electronic structures and functional properties, such as reduction potentials (E°'), the histidine ligands have not been probed in this way. We herein report the substitution of His117 in azurin with three unnatural isostructural analogues, 5-nitrohistidine(Ntr), thiazolylalanine(SHis) and 1-methylhistidine(MeH) by expressed protein ligation. While UV-vis absorption and electron paramagnetic resonance spectroscopies confirm that isostructural replacement results in minimal structural change in the Cu(II) state, the E°' of these variants increases with increasing pKa of the δ nitrogens of the imidazole. This counter-intuitive relationship between E°' of the protein and pKa of the sidechain group suggests additional factors may play a role in tuning E°'.

摘要

1 型铜蛋白具有保守的配体集,包括一个半胱氨酸和两个组氨酸,许多蛋白质,如蓝铜蛋白,也含有一个轴向蛋氨酸。虽然蓝铜蛋白中的半胱氨酸和蛋氨酸已被其非天然氨基酸的等结构类似物取代,以揭示它们在调节电子结构和功能特性(如还原电位 E°')方面的作用,但这些组氨酸配体尚未以这种方式进行探测。本文报道了通过表达蛋白连接,用三种非天然等结构类似物 5-硝基组氨酸(Ntr)、噻唑丙氨酸(SHis)和 1-甲基组氨酸(MeH)取代蓝铜蛋白中的 His117。尽管紫外可见吸收和电子顺磁共振波谱学证实等结构取代导致 Cu(II)态的结构变化最小,但这些变体的 E°'随咪唑 δ 氮的 pKa 增加而增加。这种蛋白的 E°'与侧链基团的 pKa 之间的反直觉关系表明,其他因素可能在调节 E°'方面发挥作用。

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