细粒曲霉对映选择性重组NStcI酯酶的固定化及生化特性研究。

Q2 Biochemistry, Genetics and Molecular Biology Enzyme Research Pub Date : 2013-01-01 Epub Date: 2013-05-27 DOI:10.1155/2013/928913
Carolina Peña-Montes, María Elena Mondragón-Tintor, José Augusto Castro-Rodríguez, Ismael Bustos-Jaimes, Arturo Navarro-Ocaña, Amelia Farrés
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引用次数: 13

摘要

将重组NStcI A. nidulans酯酶吸附在Accurel MP1000上,产蛋白率和固定化效率分别为42.48%和81.94%。在4°C和RT下的贮存稳定性试验表明,在这两种温度下,40天后残留活性均为100%。该生物催化剂在重复使用3个循环后仍保持其初始活性的70%以上。得到了该新型生物催化剂的生化性能。在pH为11和30℃时活性最大,在pH为9 ~ 11时稳定性最好。固定化后NStcI的热稳定性提高,在60℃下固定化1 h后仍保持47.5%的初始活性,而相同条件下的游离酶则没有活性。NStcI在100%正己烷中保存72 h后仍保持70%的初始活性。选择(R,S)-1-苯乙醇的酶解动力学反应为模型反应,乙酸乙烯酯为酰基供体。优化反应参数后,在37℃,w = 0.07, 120 h的条件下,正己烷的生物转化率最高,达到42%,对映体超过71.7%。NStcI对(R)-对映体具有选择性。得到的E值(31.3)在被认为对拆分对映体混合物有用的范围内。
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Immobilization and Biochemical Properties of the Enantioselective Recombinant NStcI Esterase of Aspergillus nidulans.

The recombinant NStcI A. nidulans esterase was adsorbed on Accurel MP1000, where protein yield and immobilization efficiency were 42.48% and 81.94%, respectively. Storage stability test at 4°C and RT showed 100% of residual activity after 40 days at both temperatures. The biocatalyst retains more than 70% of its initial activity after 3 cycles of repeated use. Biochemical properties of this new biocatalyst were obtained. Maximum activity was achieved at pH 11 and 30°C, while the best stability was observed with the pH between 9 and 11 at 40°C. NStcI thermostability was increased after immobilization, as it retained 47.5% of its initial activity after 1 h at 60°C, while the free enzyme under the same conditions displayed no activity. NStcI preserved 70% of its initial activity in 100% hexane after 72 h. Enzymatic kinetic resolution of (R,S)-1-phenylethanol was chosen as model reaction, using vinyl acetate as acyl donor. After optimization of reaction parameters, the highest possible conversion (42%) was reached at 37°C, a w of 0.07, and 120 h of bioconversion in hexane with an enantiomeric excess of 71.7%. NStcI has selectivity for (R)-enantiomer. The obtained E value (31.3) is in the range considered useful to resolve enantiomeric mixtures.

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Enzyme Research
Enzyme Research Biochemistry, Genetics and Molecular Biology-Biochemistry
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