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揭示半胱胺双加氧酶的作用机制:一种结合 HPLC-MS 分析和金属取代方法的研究。

Unveiling the mechanism of cysteamine dioxygenase: A combined HPLC-MS assay and metal-substitution approach.

机构信息

Department of Chemistry, University of Texas at San Antonio, San Antonio, TX, United States.

Department of Chemistry, University of Texas at San Antonio, San Antonio, TX, United States.

出版信息

Methods Enzymol. 2024;703:147-166. doi: 10.1016/bs.mie.2024.05.018. Epub 2024 Jun 22.

Abstract

Mammalian cysteamine dioxygenase (ADO), a mononuclear non-heme Fe(II) enzyme with three histidine ligands, plays a key role in cysteamine catabolism and regulation of the N-degron signaling pathway. Despite its importance, the catalytic mechanism of ADO remains elusive. Here, we describe an HPLC-MS assay for characterizing thiol dioxygenase catalytic activities and a metal-substitution approach for mechanistic investigation using human ADO as a model. Two proposed mechanisms for ADO differ in oxygen activation: one involving a high-valent ferryl-oxo intermediate. We hypothesized that substituting iron with a metal that has a disfavored tendency to form high-valent states would discriminate between mechanisms. This chapter details the expression, purification, preparation, and characterization of cobalt-substituted ADO. The new HPLC-MS assay precisely measures enzymatic activity, revealing retained reactivity in the cobalt-substituted enzyme. The results obtained favor the concurrent dioxygen transfer mechanism in ADO. This combined approach provides a powerful tool for studying other non-heme iron thiol oxidizing enzymes.

摘要

哺乳动物半胱胺双加氧酶(ADO)是一种单核非血红素 Fe(II)酶,具有三个组氨酸配体,在半胱胺的分解代谢和 N-去稳定信号通路的调节中发挥关键作用。尽管它很重要,但 ADO 的催化机制仍不清楚。在这里,我们描述了一种用于表征硫醇双加氧酶催化活性的 HPLC-MS 测定法,以及一种使用人 ADO 作为模型进行机制研究的金属取代方法。两种拟议的 ADO 机制在氧活化方面存在差异:一种涉及高价铁氧中间物。我们假设,用一种不利于形成高价态的金属取代铁,将有助于区分不同的机制。本章详细介绍了钴取代 ADO 的表达、纯化、制备和表征。新的 HPLC-MS 测定法精确测量了酶活性,显示钴取代酶仍具有反应活性。所得结果支持 ADO 中的同时氧转移机制。这种组合方法为研究其他非血红素铁硫醇氧化酶提供了有力工具。

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