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首页> 外文期刊>Journal of Bioscience and Bioengineering >Whole cell immobilization of refractory glucose isomerase using tris(hydroxymethyl)phosphine as crosslinker for preparation of high fructose corn syrup at elevated temperature
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Whole cell immobilization of refractory glucose isomerase using tris(hydroxymethyl)phosphine as crosslinker for preparation of high fructose corn syrup at elevated temperature

机译:使用Tris(羟甲基)膦酸盐作为交联剂的难治性葡萄糖异构酶的全细胞固定化,用于在升高温度下制备高果糖玉米糖浆

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Glucose isomerase (GI) responsible for catalyzing the isomerization from o-glucose to o-fructose, was an important enzyme for producing high fructose corn syrup (HFCS). In a quest to prepare HFCS at elevated temperature and facilitate enzymatic recovery, an effective procedure for whole cell immobilization of refractory Thermus oshimai glucose isomerase (ToGI) onto Celite 545 using tris(hydroxymethyl)phosphine (THP) as crosslinker was established. The immobilized biocatalyst showed an activity of approximate 1273 U/(g.immobilized product) via optimization in terms of cells loading, crosslinker concentration and crosslinking time. The pH optimum of the immobilized biocatalyst was displaced from pH 8.0 of native enzyme to neutral pH 7.0. Compared with conventional glutaraldehyde (GLU)-immobilized cells, it possessed the enhanced thermostability with 70.1% residual activity retaining after incubation at 90 degrees C for 72 h. Moreover, the THP-immobilized biocatalyst exhibited superior operational stability, in which it retained 85.8% of initial activity after 15 batches of bioconversion at 85 degrees C. This study paved a way for reducing catalysis cost for upscale preparation of HFCS with higher o-fructose concentration. (C) 2018, The Society for Biotechnology, Japan. All rights reserved.
机译:负责从O-葡萄糖催化异构化的葡萄糖异构酶(GI)是制备高果糖玉米糖浆(HFC)的重要酶。在升高的温度下制备HFC并促进酶促回收率,建立了使用Tris(羟甲基)膦(THP)作为交联剂将难治性热葡萄糖异构酶(TOGI)固定到Celite 545中的难治性热量葡萄糖异构酶(THG)作为交联剂。固定化的生物催化剂通过细胞负载,交联剂浓度和交联时间的优化显示了近似1273u /(G.immobilized产品)的活性。固定化生物催化剂的pH值从天然酶的pH8.0移位至中性pH7.0。与常规的戊二醛(Glu) - 咪唑(Glu) - 咪胆化细胞相比,它具有增强的热稳定性,其在90℃下孵育72小时后保持7​​0.1%的残余活性。此外,THP - 固定的生物催化剂表现出优异的操作稳定性,其中在85℃的15批生物转化后保留了85.8%的初始活性。该研究铺平了一种方法,用于减少高档制备HFC的催化成本,具有更高的O-果糖专注。 (c)2018年,日本生物技术协会。版权所有。

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