首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >The role of Cys108 in Trigonopsis variabilisd-amino acid oxidase examined through chemical oxidation studies and point mutations C108S and C108D.
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The role of Cys108 in Trigonopsis variabilisd-amino acid oxidase examined through chemical oxidation studies and point mutations C108S and C108D.

机译:通过化学氧化研究和点突变C108S和C108D检验了Cys108在三角果可变氨基酸氧化酶中的作用。

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摘要

Oxidative modification of Trigonopsis variabilis D-amino acid oxidase in vivo is traceable as the conversion of Cys108 into a stable cysteine sulfinic acid, causing substantial loss of activity and thermostability of the enzyme. To simulate native and modified oxidase each as a microheterogeneity-resistant entity, we replaced Cys108 individually by a serine (C108S) and an aspartate (C108D), and characterized the purified variants with regard to their biochemical and kinetic properties, thermostability, and reactivity towards oxidation by hypochlorite. Tandem MS analysis of tryptic peptides derived from a hypochlorite-treated inactive preparation of recombinant wild-type oxidase showed that Cys108 was converted into cysteine sulfonic acid, mimicking the oxidative modification of native enzyme as isolated. Colorimetric titration of protein thiol groups revealed that in the presence of ammonium benzoate (0.12 mM), the two muteins were not oxidized at cysteines whereas in the wild-type enzyme, one thiol group was derivatized. Each site-directed replacement caused a conformational change in D-amino acid oxidase, detected with an assortment of probes, and resulted in a turnover number for the O2-dependent reaction with D-Met which in comparison with the corresponding wild-type value was decreased two- and threefold for C108S and C108D, respectively. Kinetic analysis of thermal denaturation at 50 degrees C was used to measure the relative contributions of partial unfolding and cofactor dissociation to the overall inactivation rate in each of the three enzymes. Unlike wild-type, C108S and C108D released the cofactor in a quasi-irreversible manner and were therefore not stabilized by external FAD against loss of activity. The results support a role of the anionic side chain of Cys108 in the fine-tuning of activity and stability of D-amino acid oxidase, explaining why C108S was a surprisingly poor mimic of the native enzyme.
机译:体内Trigonopsis variabilis D-氨基酸氧化酶的氧化修饰可追溯,因为Cys108转化为稳定的半胱氨酸亚磺酸,导致酶的活性和热稳定性大大降低。为了模拟天然和修饰的氧化酶,它们分别作为微异质性抗性实体,我们分别用丝氨酸(C108S)和天冬氨酸(C108D)替换了Cys108,并就其生物化学和动力学性质,热稳定性以及对次氯酸盐氧化。串联质谱分析衍生自次氯酸盐处理的重组野生型氧化酶无活性制剂的胰蛋白酶肽,表明Cys108转化为半胱氨酸磺酸,模仿了分离后天然酶的氧化修饰。蛋白质硫醇基的比色滴定表明,在苯甲酸铵(0.12 mM)存在下,两个突变蛋白在半胱氨酸上不被氧化,而在野生型酶中,一个硫醇基被衍生化。每次定点置换都会导致D-氨基酸氧化酶的构象变化,并通过多种探针进行检测,并导致与D-Met发生O2依赖性反应的周转数与相应的野生型值相比为C108S和C108D分别下降了两倍和三倍。在50摄氏度下进行热变性的动力学分析用于测量部分解折叠和辅因子解离对三种酶各自的总体失活速率的相对贡献。与野生型不同,C108S和C108D以准不可逆的方式释放辅因子,因此无法通过外部FAD稳定以抵抗活性丧失。结果支持Cys108的阴离子侧链在D-氨基酸氧化酶的活性和稳定性的微调中的作用,这解释了为什么C108S是天然酶的惊人差的模拟。

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