Slavica Anita, Dib Iskandar, Nidetzky Bernd
Research Centre Applied Biocatalysis, Petersgasse 14, A-8010 Graz, Austria.
Biotechnol Bioeng. 2007 Jan 1;96(1):9-17. doi: 10.1002/bit.21181.
Covalent modification of purified Trigonopsis variabilis D-amino acid oxidase using maleimide-activated poly(ethylene glycol) 5000 yielded a stable bioconjugate in which three surface-exposed cysteine side chains were selectively derivatized. Compared with the native enzyme, the PEGylated variant displayed substantially (approximately 3.3-fold) slowed dissociation rate of FAD cofactor at 50 degrees C, and this caused a twofold thermostabilization of the enzyme activity. The stability under reaction conditions at 30 degrees C was also markedly enhanced in the PEG-oxidase conjugate. PEGylation did not affect steady-state kinetic parameters for oxidative deamination of D-methionine when 2,6-dichloroindophenol replaced dioxygen as the cosubstrate while it caused a ninefold decrease in substrate catalytic efficiency for the dioxygen-dependent reaction.
使用马来酰亚胺活化的聚乙二醇5000对纯化的可变三角酵母D-氨基酸氧化酶进行共价修饰,得到了一种稳定的生物共轭物,其中三个表面暴露的半胱氨酸侧链被选择性地衍生化。与天然酶相比,聚乙二醇化变体在50℃下FAD辅因子的解离速率显著减慢(约3.3倍),这导致酶活性的热稳定性提高了两倍。在30℃的反应条件下,聚乙二醇-氧化酶共轭物的稳定性也显著增强。当2,6-二氯靛酚取代双氧基作为共底物时,聚乙二醇化不影响D-甲硫氨酸氧化脱氨的稳态动力学参数,而对于依赖双氧基的反应,它导致底物催化效率降低了九倍。