嗜热果胶酶在单一宿主中的共表达用于高效果胶生物转化为D-半乳糖醛酸

C. N. Flores-Fernández, Max Cárdenas‐Fernández, G. Lye, John M. Ward
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引用次数: 1

摘要

酶的共表达允许在单个宿主中产生多种酶,这在可用于果胶生物转化的生物催化过程中是一种具有成本效益的替代方法。富含果胶的生物质是水果和糖业的大量副产品,通常被填埋或作为低价值原料出售。本工作的目的是在单一宿主中共同表达嗜热果胶甲基酯酶(PME)和外多聚半乳糖醛酸酶(exo-PGs),以使用不同的果胶底物如苹果、柑橘和甜菜果胶将果胶生物转化为D-半乳糖醛酸(GalA)。为了实现这一点,将来自地衣芽孢杆菌(BLI09)的PME与来自海洋嗜热菌(TMA01)或来自地衣芽孢菌(BLI04)的外显子PG克隆在pETDuet-1中,并在大肠杆菌BL21(DE3)中共表达。构建了四个含有两种果胶酶的共表达质粒,并对基因克隆顺序及其表达的影响等因素进行了评价。与共表达构建体1和2(分别为pETDuet-BLI09-TMA01和pETDue-BLI09-BLI04)相比,共表达构建物3和4(分别为p ETDuet-TMA01-BLI09和p ETDut-BLI04-BLI09)显示出更好的两种果胶酶表达。共表达构建体3和4对果胶生物转化为GalA最有效,在反应4小时后,从苹果和柑橘果胶分别达到3和2.5 mM GalA。总之,这项工作表明,果胶酶的共表达可能有助于降低其生产和纯化的相关成本,并提高其在利用富含果胶的生物质获得生物基化学品方面的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Co-expression of thermophilic pectinases in a single host for cost-effective pectin bioconversion into D-galacturonic acid
Co-expression of enzymes allow to produce multiple enzymes in a single host, representing a cost-effective alternative in biocatalytic processes which can be used for pectin bioconversion. Pectin-rich biomass is an abundant by-product from the fruit and sugar industries that is usually disposed in landfill or sold as a low value feedstock. The aim of this work was to co-express a thermophilic pectin methyl esterase (PME) and exo-polygalacturonases (exo-PGs) in a single host for pectin bioconversion into D-galacturonic acid (GalA) using different pectic substrates such as apple, citrus and sugar beet pectin. To achieve this, a PME from Bacillus licheniformis (BLI09) with either an exo-PG from Thermotoga maritima (TMA01) or from Bacillus licheniformis (BLI04) were cloned in pETDuet-1 and co-expressed in E. coli BL21 (DE3). Four co-expression plasmids containing both pectinases were constructed and factors such as the effect of the genes’ cloning order and their expression were evaluated. Co-expression constructs 3 and 4 (pETDuet-TMA01-BLI09 and pETDuet-BLI04-BLI09, respectively) showed better expression of both pectinases compared to co-expression constructs 1 and 2 (pETDuet-BLI09-TMA01 and pETDuet-BLI09-BLI04, respectively). Co-expression constructs 3 and 4 were the most efficient for pectin bioconversion into GalA reaching 3 and 2.5 mM GalA, respectively from apple and citrus pectin after 4 h reaction. In conclusion, this work demonstrates that the co-expression of pectinases can potentially contribute to reduce the cost associated to their production and purification as well as to increase their applicability for exploiting pectin-rich biomass to obtain bio-based chemicals.
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