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通过瘤胃真细菌纤维素降解木质纤维素生物质,从阿拉伯木聚糖寡糖中去除细胞内的乙酰基、阿魏酰基和对香豆酰基修饰。

Intracellular removal of acetyl, feruloyl and p-coumaroyl decorations on arabinoxylo-oligosaccharides imported from lignocellulosic biomass degradation by Ruminiclostridium cellulolyticum.

机构信息

Aix-Marseille Université, CNRS, LCB-UMR7283, Marseille, France.

OléoInnov, 19 rue du Musée, Marseille, 13001, France.

出版信息

Microb Cell Fact. 2024 May 24;23(1):151. doi: 10.1186/s12934-024-02423-z.

Abstract

BACKGROUND

Xylans are polysaccharides that are naturally abundant in agricultural by-products, such as cereal brans and straws. Microbial degradation of arabinoxylan is facilitated by extracellular esterases that remove acetyl, feruloyl, and p-coumaroyl decorations. The bacterium Ruminiclostridium cellulolyticum possesses the Xua (xylan utilization associated) system, which is responsible for importing and intracellularly degrading arabinoxylodextrins. This system includes an arabinoxylodextrins importer, four intracellular glycosyl hydrolases, and two intracellular esterases, XuaH and XuaJ which are encoded at the end of the gene cluster.

RESULTS

Genetic studies demonstrate that the genes xuaH and xuaJ are part of the xua operon, which covers xuaABCDD'EFGHIJ. This operon forms a functional unit regulated by the two-component system XuaSR. The esterases encoded at the end of the cluster have been further characterized: XuaJ is an acetyl esterase active on model substrates, while XuaH is a xylan feruloyl- and p-coumaryl-esterase. This latter is active on oligosaccharides derived from wheat bran and wheat straw. Modelling studies indicate that XuaH has the potential to interact with arabinoxylobiose acylated with mono- or diferulate. The intracellular esterases XuaH and XuaJ are believed to allow the cell to fully utilize the complex acylated arabinoxylo-dextrins imported into the cytoplasm during growth on wheat bran or straw.

CONCLUSIONS

This study reports for the first time that a cytosolic feruloyl esterase is part of an intracellular arabinoxylo-dextrin import and degradation system, completing its cytosolic enzymatic arsenal. This system represents a new pathway for processing highly-decorated arabinoxylo-dextrins, which could provide a competitive advantage to the cell and may have interesting biotechnological applications.

摘要

背景

木聚糖是一种在农业副产品中丰富存在的多糖,如谷物麸皮和秸秆。微生物对阿拉伯木聚糖的降解是由去除乙酰基、阿魏酰基和对香豆酰基修饰的胞外酯酶促进的。细菌 Ruminiclostridium cellulolyticum 拥有 Xua(木聚糖利用相关)系统,该系统负责导入和细胞内降解阿拉伯木二糖。该系统包括一个阿拉伯木二糖进口器,四个细胞内糖苷水解酶和两个细胞内酯酶,XuaH 和 XuaJ 由基因簇末端编码。

结果

遗传研究表明,xuaH 和 xuaJ 基因是 xua 操纵子的一部分,该操纵子涵盖了 xuaABCDD'EFGHIJ。该操纵子形成了一个由双组分系统 XuaSR 调节的功能单元。在该簇末端编码的酯酶进一步被表征:XuaJ 是一种在模型底物上具有活性的乙酰酯酶,而 XuaH 是一种木聚糖阿魏酰基和对香豆酰基酯酶。后者在来源于麦麸和麦草的寡糖上具有活性。建模研究表明,XuaH 有可能与单或二阿魏酰化的阿拉伯木二糖结合。细胞内酯酶 XuaH 和 XuaJ 被认为允许细胞在以麦麸或麦草为生长基质时充分利用导入细胞质的复杂酰化阿拉伯木二糖。

结论

本研究首次报道了一种细胞溶质的阿魏酰酯酶是细胞内阿拉伯木二糖导入和降解系统的一部分,完成了其细胞溶质酶库。该系统代表了一种处理高度修饰的阿拉伯木二糖的新途径,这可能为细胞提供竞争优势,并可能具有有趣的生物技术应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f5c/11127375/b484b19bde62/12934_2024_2423_Fig1_HTML.jpg

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