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鉴定木聚糖阿拉伯糖基 2-O-木糖基转移酶,该酶能在草类植物木聚糖阿拉伯糖侧链上添加 2-O-木糖基残基。

Identification of xylan arabinosyl 2-O-xylosyltransferases catalyzing the addition of 2-O-xylosyl residue onto arabinosyl side chains of xylan in grass species.

机构信息

Department of Plant Biology, University of Georgia, Athens, GA, 30602, USA.

Department of Plant & Environmental New Resources, College of Life Sciences, Kyung Hee University, Yongin, 17104, Republic of Korea.

出版信息

Plant J. 2022 Oct;112(1):193-206. doi: 10.1111/tpj.15939. Epub 2022 Sep 5.

Abstract

Grass xylan, the major hemicellulose in both primary and secondary cell walls, is heavily decorated with α-1,3-linked arabinofuranosyl (Araf) residues that may be further substituted at O-2 with xylosyl (Xyl) or Araf residues. Although xylan 3-O-arabinosyltransferases (XATs) catalyzing 3-O-Araf addition onto xylan have been characterized, glycosyltransferases responsible for the transfer of 2-O-Xyl or 2-O-Araf onto 3-O-Araf residues of xylan to produce the Xyl-Araf and Araf-Araf disaccharide side chains remain to be identified. In this report, we showed that a rice GT61 member, named OsXAXT1 (xylan arabinosyl 2-O-xylosyltransferase 1) herein, was able to mediate the addition of Xyl-Araf disaccharide side chains onto xylan when heterologously co-expressed with OsXAT2 in the Arabidopsis gux1/2/3 (glucuronic acid substitution of xylan 1/2/3) triple mutant that lacks any glycosyl substitutions. Recombinant OsXAXT1 protein expressed in human embryonic kidney 293 cells exhibited a xylosyltransferase activity catalyzing the addition of Xyl from UDP-Xyl onto arabinosylated xylooligomers. Consistent with its function as a xylan arabinosyl 2-O-xylosyltransferase, CRISPR-Cas9-mediated mutations of the OsXAXT1 gene in transgenic rice plants resulted in a reduction in the level of Xyl-Araf disaccharide side chains in xylan. Furthermore, we revealed that XAXT1 close homologs from several other grass species, including switchgrass, maize, and Brachypodium, possessed the same functions as OsXAXT1, indicating functional conservation of XAXTs in grass species. Together, our findings establish that grass XAXTs are xylosyltransferases catalyzing Xyl transfer onto O-2 of Araf residues of xylan to form the Xyl-Araf disaccharide side chains, which furthers our understanding of genes involved in xylan biosynthesis.

摘要

草本科半纤维素木聚糖在初生壁和次生壁中含量丰富,其主链上高度连接有α-1,3-阿拉伯呋喃糖基(Araf)残基,这些残基可能在 O-2 位进一步被木糖基(Xyl)或 Araf 残基取代。虽然已经鉴定了催化木聚糖 3-O-Araf 加成的木聚糖 3-O-阿拉伯糖基转移酶(XAT),但负责将 2-O-Xyl 或 2-O-Araf 转移到木聚糖 3-O-Araf 残基上以产生 Xyl-Araf 和 Araf-Araf 二糖侧链的糖基转移酶仍有待鉴定。在本报告中,我们表明,一种水稻 GT61 成员,在此命名为 OsXAXT1(木聚糖阿拉伯糖基 2-O-木糖基转移酶 1),当与 Arabidopsis gux1/2/3(木聚糖 1/2/3 的糖醛酸取代)三重突变体中的 OsXAT2 异源共表达时,能够介导 Xyl-Araf 二糖侧链添加到木聚糖上,该突变体缺乏任何糖基取代。在人胚肾 293 细胞中表达的重组 OsXAXT1 蛋白表现出木糖基转移酶活性,能够催化 UDP-Xyl 上的 Xyl 加成到阿拉伯糖基化的木寡糖上。与它作为木聚糖阿拉伯糖基 2-O-木糖基转移酶的功能一致,CRISPR-Cas9 介导的转基因水稻中 OsXAXT1 基因的突变导致木聚糖中二糖侧链 Xyl-Araf 的水平降低。此外,我们揭示了包括柳枝稷、玉米和短柄草在内的几种草本科近缘种的 XAXT1 近缘基因具有与 OsXAXT1 相同的功能,表明草本科 XAXTs 的功能保守。总之,我们的发现确立了草本科 XAXTs 是催化 Xyl 转移到木聚糖 Araf 残基的 O-2 位以形成 Xyl-Araf 二糖侧链的木糖基转移酶,这进一步加深了我们对木聚糖生物合成相关基因的理解。

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