Li Wei, Pierce Brad S
Department of Chemistry and Biochemistry, College of Sciences, The University of Texas at Arlington, Arlington, TX 76019, United States.
Department of Chemistry and Biochemistry, College of Sciences, The University of Texas at Arlington, Arlington, TX 76019, United States.
Arch Biochem Biophys. 2015 Jan 1;565:49-56. doi: 10.1016/j.abb.2014.11.004. Epub 2014 Nov 20.
Cysteine dioxygenase (CDO) is a non-heme mononuclear iron enzyme that catalyzes the oxygen-dependent oxidation of L-cysteine (Cys) to produce L-cysteine sulfinic acid (CSA). Sequence alignment of mammalian CDO with recently discovered thiol dioxygenase enzymes suggests that the mononuclear iron site within all enzymes in this class share a common 3-His first coordination sphere. This implies a similar mechanistic paradigm among thiol dioxygenase enzymes. Although steady-state studies were first reported for mammalian CDO over 45 years ago, detailed analysis of the specificity for alternative thiol-bearing substrates and their oxidative coupling efficiencies have not been reported for this enzyme. Assuming a similar mechanistic theme among this class of enzymes, characterization of the CDO substrate specificity may provide valuable insight into substrate-active site intermolecular during thiol oxidation. In this work, the substrate-specificity for wild-type Mus musculus CDO was investigated using NMR spectroscopy and LC-MS for a variety of thiol-bearing substrates. Tandem mass spectrometry was used to confirm dioxygenase activity for each non-native substrate investigated. Steady-state Michaelis-Menten parameters for sulfinic acid product formation and O₂-consumption were compared to establish the coupling efficiency for each reaction. In light of these results, the minimal substrate requirements for CDO catalysis and O₂-activation are discussed.
半胱氨酸双加氧酶(CDO)是一种非血红素单核铁酶,催化L-半胱氨酸(Cys)的氧依赖性氧化反应,生成L-半胱氨酸亚磺酸(CSA)。哺乳动物CDO与最近发现的硫醇双加氧酶的序列比对表明,该类所有酶中的单核铁位点共享一个由3个组氨酸构成的第一配位层。这意味着硫醇双加氧酶之间存在相似的机制模式。尽管45多年前就首次报道了对哺乳动物CDO的稳态研究,但尚未报道该酶对其他含硫醇底物的特异性及其氧化偶联效率的详细分析。假设这类酶之间存在相似的机制主题,CDO底物特异性的表征可能为硫醇氧化过程中底物-活性位点的分子间作用提供有价值的见解。在这项工作中,使用核磁共振光谱和液相色谱-质谱联用技术研究了野生型小家鼠CDO对多种含硫醇底物的底物特异性。串联质谱用于确认所研究的每种非天然底物的双加氧酶活性。比较了亚磺酸产物形成和氧气消耗的稳态米氏参数,以确定每个反应的偶联效率。根据这些结果,讨论了CDO催化和氧气活化的最低底物要求。