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Construction of a simple biocatalyst using psychrophilic bacterial cells and its application for efficient 3-hydroxypropionaldehyde production from glycerol

机译:利用嗜冷细菌细胞构建简单的生物催化剂及其在甘油有效生产3-羟基丙醛中的应用

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摘要

Most whole cell biocatalysts have some problems with yields and productivities because of various metabolites produced as byproducts and limitations of substrate uptake. We propose a psychrophile-based simple biocatalyst for efficient bio-production using mesophilic enzymes expressed in psychrophilic Shewanella livingstonensis Ac10 cells whose basic metabolism was inactivated by heat treatment. The 45°C heat-treated cells expressing lacZ showed maximum beta-galactosidase activity as well as chloroform/SDS-treated cells to increase membrane permeability. The fluorescent dye 5-cyano-2,3-ditolyl-tetrazolium chloride staining indicated that most basic metabolism of Ac10 was lost by heat treatment at 45˚C for 10 min. The simple biocatalyst was applied for 3-HPA production by using Klebsiella pneumoniae dhaB genes. 3-HPA was stoichiometrically produced with the complete consumption of glycerol at a high production rate of 8.85 mmol 3-HPA/g dry cell/h. The amount of 3-HPA production increased by increasing the concentrations of biocatalyst and glycerol. Furthermore, it could convert biodiesel-derived crude glycerol to 3-HPA.
机译:大多数全细胞生物催化剂由于作为副产物产生的各种代谢产物和底物吸收的限制,在产量和生产率方面都存在一些问题。我们提出了一种基于嗜冷菌的简单生物催化剂,可利用嗜热希瓦氏菌Livestonstonensis Ac10细胞中表达的嗜温酶进行有效的生物生产,该嗜酸性希瓦氏菌通过热处理使其基本代谢失活。表达lacZ的45°C热处理细胞显示出最大的β-半乳糖苷酶活性,而氯仿/ SDS处理过的细胞显示出最大的膜通透性。荧光染料5-cyano-2,3-ditolyl-tetrazolium chloride染色表明,Ac10的大部分基本代谢在45°C热处理10分钟后会丢失。通过使用肺炎克雷伯菌dhaB基因将简单的生物催化剂应用于3-HPA的生产。以化学计量法生成3-HPA,完全消耗甘油,以8.85 mmol 3-HPA / g干细胞/ h的高生产率进行生产。通过增加生物催化剂和甘油的浓度,增加了3-HPA的产生量。此外,它可以将生物柴油衍生的粗甘油转化为3-HPA。

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