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利用部分溶解和过饱和乳糖溶液,通过米曲霉β-半乳糖苷酶合成半乳糖寡糖。

Synthesis of galacto-oligosaccharides by β-galactosidase from Aspergillus oryzae using partially dissolved and supersaturated solution of lactose.

机构信息

School of Biochemical Engineering, Pontificia Universidad Católica de Valparaíso, Avenida Brasil 2147, Valparaíso, Chile.

出版信息

Enzyme Microb Technol. 2012 Mar 10;50(3):188-94. doi: 10.1016/j.enzmictec.2011.12.003. Epub 2011 Dec 28.

Abstract

The effect of enzyme to substrate ratio, initial lactose concentration and temperature has been studied for the kinetically controlled reaction of lactose transgalactosylation with Aspergillus oryzae β-galactosidase, to produce prebiotic galacto-oligosaccharides (GOS). Enzyme to substrate ratio had no significant effect on maximum yield and specific productivity. Galacto-oligosaccharide syntheses at very high lactose concentrations (40, 50 and 60%, w/w, lactose monohydrate) were evaluated at different temperatures (40, 47.5 and 55°C). Within these ranges, lactose could be found as a supersaturated solution or a heterogeneous system with precipitated lactose, resulting in significant effect on GOS synthesis. An increase in initial lactose concentration produced a slight increase in maximum yield as long as lactose remained dissolved. Increase in temperature produced a slight decrease in maximum yield and an increase in specific productivity when supersaturation of lactose occurred during reaction. Highest yield of 29 g GOS/100 g lactose added was obtained at a lactose monohydrate initial concentration of 50% (w/w) and 47.5°C. Highest specific productivity of 0.38 g GOSh(-1) mg enzyme(-1) was obtained at lactose monohydrate initial concentration of 40% (w/w) and 55°C, where a maximum yield of 27 g GOS/100 g lactose added was reached. This reflects the complex interplay between temperature and initial lactose concentration on the reaction of synthesis. When lactose precipitation occurred, values of yields and specific productivities lower than 22 g GOS/100 g lactose added and 0.03 gGOSh(-1) mg enzyme(-1) were obtained, respectively.

摘要

研究了酶与底物比、初始乳糖浓度和温度对米曲霉β-半乳糖苷酶动力学控制乳糖转半乳糖反应的影响,以生产益生元半乳糖低聚糖(GOS)。酶与底物比对最大产率和比生产率没有显著影响。在不同温度(40、47.5 和 55°C)下评估了非常高的乳糖浓度(40、50 和 60%,w/w,乳糖一水合物)下的半乳糖低聚糖合成。在这些范围内,乳糖可以作为过饱和溶液或具有沉淀乳糖的非均相体系存在,这对 GOS 合成有显著影响。只要乳糖保持溶解,初始乳糖浓度的增加会导致最大产率略有增加。当反应过程中乳糖发生过饱和时,温度的升高会导致最大产率略有下降,比生产率增加。在乳糖一水合物初始浓度为 50%(w/w)和 47.5°C 的条件下,获得了 29 g GOS/100 g 乳糖的最高产率。在乳糖一水合物初始浓度为 40%(w/w)和 55°C 的条件下,获得了 0.38 g GOSh(-1) mg 酶(-1)的最高比生产率,此时达到了 27 g GOS/100 g 乳糖的最大产率。这反映了温度和初始乳糖浓度对合成反应的复杂相互作用。当乳糖沉淀发生时,产率和比生产率的值分别低于 22 g GOS/100 g 乳糖和 0.03 gGOSh(-1) mg 酶(-1)。

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