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(R)-和(S)-胺转氨酶在壳聚糖载体上的固定化及其以异丙胺为供体在胺合成中的应用。

Immobilization of (R)- and (S)-amine transaminases on chitosan support and their application for amine synthesis using isopropylamine as donor.

作者信息

Mallin H, Höhne M, Bornscheuer U T

机构信息

Department of Biotechnology & Enzyme Catalysis, Institute of Biochemistry, Greifswald University, Felix-Hausdorff-Str 4, D-17487 Greifswald, Germany.

Protein Biochemistry, Institute of Biochemistry, Greifswald University, Felix-Hausdorff-Str 4, D-17487 Greifswald, Germany.

出版信息

J Biotechnol. 2014 Dec 10;191:32-7. doi: 10.1016/j.jbiotec.2014.05.015. Epub 2014 May 27.

Abstract

Transaminases from Aspergillus fumigatus ((R)-selective, AspFum), Ruegeria pomeroyi ((S)-selective, 3HMU) and Rhodobacter sphaeroides 2.4.1 ((S)-selective, 3I5T) were immobilized on chitosan with specific activities of 99, 157, and 163U/g and acceptable yields (54, 21, and 23%, respectively) for glutaraldehyde (GA) immobilization. Besides GA, also divinylsulfone was used as linker molecule leading to a similar efficient immobilization for two enzymes, GibZea and NeoFis, whereas GA was superior in the other cases. Storage of the GA-immobilized enzymes for one month resulted in increased relative activities between 120 and 180%. The thermal stability was improved, especially for the GA-immobilized AspFum compared to the free enzyme after incubation for 4h at 60°C (10% vs. 235% residual activity). Especially after incubation of AspFum (free or immobilized) for 2h at 50°C a strongly increased activity was observed (up to 359% of the initial activity). This effect was studied in more detail, revealing that one heat activation prior and one after immobilization increased the overall immobilization efficiency. Recycling of the immobilized ATAs resulted only in a small reduction of activity after four batches. Asymmetric synthesis of (R)- or (S)-1-methyl-3-phenylpropylamine from the prostereogenic ketone using isopropylamine (IPA) as amino donor was applied with conversions up to 50% (AspFum) or 75% (3HMU). Except for NeoFis, all immobilized ATAs showed higher conversions compared to the free enzyme.

摘要

将烟曲霉((R)-选择性,AspFum)、波氏红球菌((S)-选择性,3HMU)和球形红杆菌2.4.1((S)-选择性,3I5T)的转氨酶固定在壳聚糖上,戊二醛(GA)固定的比活性分别为99、157和163U/g,产率可接受(分别为54%、21%和23%)。除了GA,二乙烯砜也用作连接分子,对两种酶GibZea和NeoFis实现了类似的高效固定,而在其他情况下GA更具优势。GA固定的酶储存一个月后,相对活性提高了120%至180%。热稳定性得到改善,特别是与游离酶相比,GA固定的AspFum在60°C孵育4小时后(残留活性为10%对235%)。特别是AspFum(游离或固定化)在50°C孵育2小时后,观察到活性大幅增加(高达初始活性的359%)。对这种效应进行了更详细的研究,发现固定化前和固定化后各进行一次热激活可提高整体固定化效率。固定化转氨酶循环使用四轮后活性仅略有降低。使用异丙胺(IPA)作为氨基供体,由前手性酮不对称合成(R)-或(S)-1-甲基-3-苯基丙胺,转化率高达50%(AspFum)或75%(3HMU)。除了NeoFis,所有固定化转氨酶与游离酶相比都表现出更高的转化率。

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