Andreo-Vidal Andres, Mamounis Kyle J, Sehanobish Esha, Avalos Dante, Campillo-Brocal Jonatan Cristian, Sanchez-Amat Antonio, Yukl Erik T, Davidson Victor L
Department of Genetics and Microbiology, University of Murcia , Murcia 30100, Spain.
Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida , Orlando, Florida 32827, United States.
Biochemistry. 2018 Feb 20;57(7):1155-1165. doi: 10.1021/acs.biochem.8b00009. Epub 2018 Feb 6.
Glycine oxidase from Pseudoalteromonas luteoviolacea (PlGoxA) is a cysteine tryptophylquinone (CTQ)-dependent enzyme. Sequence analysis and phylogenetic analysis place it in a newly designated subgroup (group IID) of a recently identified family of LodA-like proteins, which are predicted to possess CTQ. The crystal structure of PlGoxA reveals that it is a homotetramer. It possesses an N-terminal domain with no close structural homologues in the Protein Data Bank. The active site is quite small because of intersubunit interactions, which may account for the observed cooperativy toward glycine. Steady-state kinetic analysis yielded the following values: k = 6.0 ± 0.2 s, K = 187 ± 18 μM, and h = 1.77 ± 0.27. In contrast to other quinoprotein amine dehydrogenases and oxidases that exhibit anomalously large primary kinetic isotope effects on the rate of reduction of the quinone cofactor by the amine substrate, no significant primary kinetic isotope effect was observed for this reaction of PlGoxA. The absorbance spectrum of glycine-reduced PlGoxA exhibits features in the range of 400-650 nm that have not previously been seen in other quinoproteins. Thus, in addition to the unusual structural features of PlGoxA, the kinetic and chemical reaction mechanisms of the reductive half-reaction of PlGoxA appear to be distinct from those of other amine dehydrogenases and amine oxidases that use tryptophylquinone and tyrosylquinone cofactors.
来自紫色假交替单胞菌的甘氨酸氧化酶(PlGoxA)是一种依赖半胱氨酸色氨酸醌(CTQ)的酶。序列分析和系统发育分析将其置于最近鉴定的LodA样蛋白家族新指定的亚组(IID组)中,预计这些蛋白具有CTQ。PlGoxA的晶体结构表明它是一种同四聚体。它具有一个N端结构域,在蛋白质数据库中没有紧密的结构同源物。由于亚基间相互作用,活性位点相当小,这可能解释了观察到的对甘氨酸的协同作用。稳态动力学分析得出以下值:k = 6.0 ± 0.2 s,K = 187 ± 18 μM,h = 1.77 ± 0.27。与其他醌蛋白胺脱氢酶和氧化酶不同,这些酶对胺底物还原醌辅因子的速率表现出异常大的一级动力学同位素效应,而PlGoxA的该反应未观察到明显的一级动力学同位素效应。甘氨酸还原的PlGoxA的吸收光谱在400 - 650 nm范围内呈现出其他醌蛋白中未曾见过的特征。因此,除了PlGoxA不同寻常的结构特征外,PlGoxA还原半反应的动力学和化学反应机制似乎与其他使用色氨酸醌和酪氨酸醌辅因子的胺脱氢酶和胺氧化酶不同。