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参与氧化非磷酸化途径的戊醛糖分解代谢酶的结构与功能

Structure and function of aldopentose catabolism enzymes involved in oxidative non-phosphorylative pathways.

作者信息

Ren Yaxin, Eronen Veikko, Blomster Andberg Martina, Koivula Anu, Hakulinen Nina

机构信息

Department of Chemistry, University of Eastern Finland, 111, 80101, Joensuu, Finland.

VTT Technical Research Centre of Finland Ltd, Espoo, Finland.

出版信息

Biotechnol Biofuels Bioprod. 2022 Dec 28;15(1):147. doi: 10.1186/s13068-022-02252-5.

Abstract

Platform chemicals and polymer precursors can be produced via enzymatic pathways starting from lignocellulosic waste materials. The hemicellulose fraction of lignocellulose contains aldopentose sugars, such as D-xylose and L-arabinose, which can be enzymatically converted into various biobased products by microbial non-phosphorylated oxidative pathways. The Weimberg and Dahms pathways convert pentose sugars into α-ketoglutarate, or pyruvate and glycolaldehyde, respectively, which then serve as precursors for further conversion into a wide range of industrial products. In this review, we summarize the known three-dimensional structures of the enzymes involved in oxidative non-phosphorylative pathways of pentose catabolism. Key structural features and reaction mechanisms of a diverse set of enzymes responsible for the catalytic steps in the reactions are analysed and discussed.

摘要

平台化学品和聚合物前体可以通过从木质纤维素废料开始的酶促途径来生产。木质纤维素的半纤维素部分含有戊醛糖,如D-木糖和L-阿拉伯糖,它们可以通过微生物非磷酸化氧化途径酶促转化为各种生物基产品。温伯格途径和达姆斯途径分别将戊糖转化为α-酮戊二酸或丙酮酸和乙醇醛,然后这些产物作为进一步转化为多种工业产品的前体。在本综述中,我们总结了参与戊糖分解代谢氧化非磷酸化途径的酶的已知三维结构。分析和讨论了负责反应中催化步骤的多种酶的关键结构特征和反应机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e2/9795676/af99ff122b21/13068_2022_2252_Fig1_HTML.jpg

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