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通过锌(II)的亲和结合控制组氨酸标记的硝酸还原酶在自组装单层中的取向和电化学。

Affinity binding via zinc(II) for controlled orientation and electrochemistry of histidine-tagged nitrate reductase in self-assembled monolayers.

机构信息

The Nitrate Elimination Co., Inc. (NECi), 334 Hecla Street, Lake Linden, MI 49945, USA.

出版信息

Bioelectrochemistry. 2013 Oct;93:46-50. doi: 10.1016/j.bioelechem.2012.07.002. Epub 2012 Jul 23.

DOI:10.1016/j.bioelechem.2012.07.002
PMID:22894913
Abstract

Monolayers of Cu(II)-complexes on electrode surfaces are frequently applied for the immobilization and controlled orientation of His-tagged redox proteins. However, affinity binding is limited to applications that require potentials less negative than the reduction potential of the metal complexes. In order to overcome this limitation, we used Zn(2+) cations on nitrilotriacetic acid (NTA) modified carbon electrodes for the coordination of His-tagged nitrate reductase (NaR). The NTA modified electrodes were prepared upon diazotation and electrochemical reduction of an aniline functionalized NTA ligand. After coordination of Zn(2+) to the bound NTA ligand, self-assembly of NaR is achieved via coordination of the imidazole groups from the His-tag to the NTA-Zn(II) complex. The electrochemical investigations of the NaR monolayer on NTA-Zn(II) films demonstrate the catalytic activity for reduction of nitrate to nitrite in the presence of methyl viologen. The catalytic current density correlates with the one expected for a fully active enzyme monolayer. Moreover, the reduction of Zn(2+) is not observed at the potential necessary for the reduction of methyl viologen. Therefore, affinity binding based on Zn(2+) may be used for the immobilization and electrochemical applications of His-tagged NaR.

摘要

电极表面的 Cu(II)-配合物单层经常被用于固定和控制 His 标记的氧化还原蛋白的定向。然而,亲和结合仅限于需要的电势比金属配合物的还原电势更负的应用。为了克服这个限制,我们使用锌(Ⅱ)阳离子在氮川三乙酸(NTA)修饰的碳电极上用于配位 His 标记的硝酸还原酶(NaR)。NTA 修饰的电极通过在苯胺功能化的 NTA 配体上进行重氮化和电化学还原来制备。在 Zn(Ⅱ)与结合的 NTA 配体配位后,NaR 通过 His 标记的咪唑基团与 NTA-Zn(Ⅱ)配合物的配位来实现自组装。在 NTA-Zn(Ⅱ)薄膜上 NaR 单层的电化学研究表明,在存在甲紫精的情况下,具有还原硝酸盐为亚硝酸盐的催化活性。催化电流密度与完全活性酶单层的预期电流密度相关。此外,在还原甲紫精所需的电势下,没有观察到 Zn(Ⅱ)的还原。因此,基于 Zn(Ⅱ)的亲和结合可用于 His 标记的 NaR 的固定化和电化学应用。

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