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首页> 外文期刊>Biochemical Engineering Journal >Cross-linking enzyme aggregates in the macropores of silica gel: A practical and efficient method for enzyme stabilization
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Cross-linking enzyme aggregates in the macropores of silica gel: A practical and efficient method for enzyme stabilization

机译:硅胶大孔中的交联酶聚集体:一种稳定酶的实用有效方法

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摘要

Cross-linked enzyme aggregates of papain were prepared in commercial macroporous silica gel (CLEAs-MSG) in order to improve the operability and mechanical stability of CLEAs. CLEAs-MSG was obtained from simple adsorption, precipitation and one-step-cross-linking. CLEAs-MSG was characterized by stable structure that did not leak out enzyme from the macropores because of covalent bonding between CLEAs and MSG. The optimal temperature of papain CLEAs in MSG was 40-90 °C and the optimal pH was 7.0, which were improved compared to free papain and CLEAs. The CLEAs-MSG also enhanced the storage stability and thermal stability. Moreover, the CLEAs-MSG exhibited good reusability due to its suitable size and active properties. By using CLEAs-MSG of papain as biocatalyst, the kinetically controlled z-Ala-Gln synthesis was achieved with the yield of 32.9%, which was almost equal to that by using free papain as biocatalyst.
机译:为了改善CLEA的可操作性和机械稳定性,在商业大孔硅胶(CLEAs-MSG)中制备木瓜蛋白酶的交联酶聚集体。 CLEAs-MSG通过简单的吸附,沉淀和一步交联获得。 CLEAs-MSG的特征是结构稳定,由于CLEAs和MSG之间的共价键合,不会从大孔中漏出酶。味精中木瓜蛋白酶CLEA的最适温度为40-90°C,最适pH为7.0,与游离木瓜蛋白酶和CLEA相比有所提高。 CLEAs-MSG还增强了储存稳定性和热稳定性。此外,CLEAs-MSG由于其合适的尺寸和活性特性而具有良好的可重复使用性。通过使用木瓜蛋白酶的CLEAs-MSG作为生物催化剂,可以实现动力学控制的z-Ala-Gln合成,产率为32.9%,几乎与使用游离木瓜蛋白酶作为生物催化剂的产率相同。

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