首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Site-specific covalent attachment of heme proteins on self-assembled monolayers
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Site-specific covalent attachment of heme proteins on self-assembled monolayers

机译:血红素蛋白在自组装单层上的位点特异性共价附着

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摘要

Naturally occurring hemin cofactor has been functionalized to introduce two terminal alkyne groups. This modified hemin has been successfully covalently attached to mixed self-assembled monolayers of alkanethiols and azide-terminated alkanethiols on gold electrodes using a Cu ~I-catalyzed 1,3-cycloaddition reaction. However these hemin-modified electrodes could not be used to reconstitute apomyoglobin on gold electrodes owing to the hydrophobicity of the alkane thiol self-assembled monolayer. Modification of existing techniques allowed covalent attachment of alkyne-terminated electroactive species onto mixed monolayers of azidothiols and carboxylatoalkanethiols on electrodes using the same Cu ~I-catalyzed 1,3-cycloaddition reaction. Apomyoglobin could be reconstituted using the hemin covalently attached to these hydrophilic electrodes. The electrochemical data, UV-vis absorption data, surface-enhanced resonance Raman spectroscopy data, and atomic force microscopy data indicate the presence of these modified myoglobin proteins on these electrodes. The direct attachment of the heme cofactor of these modified myoglobin proteins to the electrode allows fast electron transfer to the heme center from the electrode and affords efficient O _2-reducing bioelectrodes under physiological conditions.
机译:天然存在的血红素辅因子已被官能化以引入两个末端炔基。这种修饰的血红素已成功地通过Cu〜I催化的1,3-环加成反应共价附着于金电极上的链烷硫醇和叠氮基末端链烷硫醇的混合自组装单层。然而,由于链烷硫醇自组装单层的疏水性,这些血红素修饰的电极不能用于在金电极上重构肌红蛋白。对现有技术的修改允许使用相同的Cu〜I催化的1,3-环加成反应,将炔基封端的电活性物质共价附着到叠氮基硫醇和羧基链烷烃基硫醇的混合单层电极上。可以使用与这些亲水性电极共价连接的血红素来重构肌红蛋白。电化学数据,紫外可见吸收数据,表面增强共振拉曼光谱数据和原子力显微镜数据表明这些电极上存在这些修饰的肌红蛋白蛋白。这些修饰的肌红蛋白蛋白的血红素辅因子直接附着在电极上可以使电子从电极快速转移到血红素中心,并在生理条件下提供有效的O 2还原生物电极。

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