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利用谷氨酸棒杆菌工程菌协同转化木质纤维素生物质生产木糖酸。

Engineering of Corynebacterium glutamicum for Consolidated Conversion of Hemicellulosic Biomass into Xylonic Acid.

机构信息

Department of Chemical and Biomolecular Engineering, BK21 Plus Program, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141,, Republic of Korea.

Energy and Environment Fusion Technology Center (E2FTC), Myongji University, Yongin City, Gyeonggi Province, Republic of Korea.

出版信息

Biotechnol J. 2017 Nov;12(11). doi: 10.1002/biot.201700040. Epub 2017 Sep 11.

Abstract

Xylonic acid is a promising platform chemical with various applications in the fields of food, pharmaceuticals, and agriculture. However, in the current process, xylonic acid is mainly produced by the conversion of xylose, whose preparation requires substantial cost and time. Here, Corynebacterium glutamicum is engineered for the consolidated bioconversion of hemicellulosic biomass (xylan) into xylonic acid in a single cultivation. First, for the efficient conversion of xylose to xylonic acid, xylose dehydrogenase (Xdh) and xylonolactonase (XylC) from Caulobacter crescentus are evaluated together with a previously optimized xylose transporter module (XylE of Escherichia coli), and cells expressing xdh and xylE genes with an optimized expression system can produce xylonic acid from xylose with 100% conversion yield. Next, to directly process xylan as a substrate, an engineered xylan-degrading module is introduced, in which two xylan-degrading enzymes (endoxylanase and xylosidase) are secreted into the culture medium. The engineered C. glutamicum successfully produce 6.23 g L of xylonic acid from 20 g L of xylan. This is the first report on xylonic acid production in C. glutamicum and this robust system will contribute to development of an industrially relevant platform for production of xylonic acid from raw biomass.

摘要

木酮糖酸是一种很有前途的平台化合物,在食品、制药和农业等领域有多种应用。然而,在目前的工艺中,木酮糖酸主要是通过木糖的转化来生产的,其制备需要大量的成本和时间。在这里,我们对谷氨酸棒杆菌进行了工程改造,使其能够在单一培养物中从半纤维素生物质(木聚糖)中整合生物转化为木酮糖酸。首先,为了将木糖高效转化为木酮糖酸,我们评估了来自新月柄杆菌的木糖脱氢酶(Xdh)和木酮醇内酯酶(XylC),以及之前优化的木糖转运模块(大肠杆菌的 XylE),表达 xdh 和 xylE 基因的细胞在优化的表达系统中可以将木糖 100%转化为木酮糖酸。接下来,为了直接将木聚糖作为底物进行处理,我们引入了一个经过工程改造的木聚糖降解模块,其中两种木聚糖降解酶(内切木聚糖酶和木糖苷酶)被分泌到培养基中。经过工程改造的谷氨酸棒杆菌成功地从 20 g/L 的木聚糖中生产出 6.23 g/L 的木酮糖酸。这是在谷氨酸棒杆菌中生产木酮糖酸的首次报道,该健壮的系统将有助于开发从原料生物质生产木酮糖酸的工业相关平台。

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