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定位于胞质溶胶的UDP-木糖合酶为木聚糖和木葡聚糖的生物合成提供了UDP-木糖的主要来源。

Cytosol-Localized UDP-Xylose Synthases Provide the Major Source of UDP-Xylose for the Biosynthesis of Xylan and Xyloglucan.

作者信息

Zhong Ruiqin, Teng Quincy, Haghighat Marziyeh, Yuan Youxi, Furey Samuel T, Dasher Robert L, Ye Zheng-Hua

机构信息

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

Department of Pharmaceutical and Biomedical Sciences, University of Georgia, Athens, GA , USA.

出版信息

Plant Cell Physiol. 2017 Jan 1;58(1):156-174. doi: 10.1093/pcp/pcw179.

Abstract

Xylan and xyloglucan are the two major cell wall hemicelluloses in plants, and their biosynthesis requires a steady supply of the sugar donor, UDP-xylose. UDP-xylose is synthesized through conversion of UDP-glucuronic acid (UDP-GlcA) by the activities of UDP-xylose synthase (UXS). There exist six UXS genes in the Arabidopsis thaliana genome; three of them (UXS1, UXS2 and UXS4) encode Golgi-localized enzymes and the other three (UXS3, UXS5 and UXS6) encode cytosol-localized enzymes. In this report, we investigated the contributions of these UXS genes in supplying UDP-xylose for the biosynthesis of xylan and xyloglucan. Expression analyses revealed that the six UXS genes exhibited distinct and overlapping expression patterns in different cell types of stems, root-hypocotyls and young seedlings, and that the relative enzymatic activity of UXS in the cytosol was 17 times higher than that in the Golgi. Among the six UXS genes, UXS3, UXS5 and UXS6 showed the highest expression in stems and were expressed predominantly in xylem cells and interfascicular fibers. Their predominant expression in secondary wall-forming cells was consistent with the finding that the expression of UXS3, UXS5 and UXS6 was directly activated by the secondary wall NAC master switches. Although simultaneous mutations of UXS1, UXS2 and UXS4 did not cause any apparent effects on plant growth and xylan biosynthesis, simultaneous down-regulation/mutations of UXS3, UXS5 and UXS6 led to a drastic reduction in secondary wall thickening, a severe deformation of xylem vessels, a significant decrease in xylan content without an apparent reduction in its chain length and an absence of GlcA side chains in xylan, which are reminiscent of the phenotypes of some known xylan-deficient mutants. Moreover, Immunolocalization with two xyloglucan monoclonal antibodies, LM15 and LM25, revealed a significant reduction in the amount of xylogulcan in the primary walls. These results demonstrate that the cytosol-localized UXS3, UXS5 and UXS6 play a predominant role in the supply of UDP-xylose for the biosynthesis of xylan and xyloglucan.

摘要

木聚糖和木葡聚糖是植物细胞壁中两种主要的半纤维素,它们的生物合成需要稳定供应糖供体UDP-木糖。UDP-木糖是通过UDP-木糖合酶(UXS)的活性将UDP-葡萄糖醛酸(UDP-GlcA)转化而合成的。拟南芥基因组中存在六个UXS基因;其中三个(UXS1、UXS2和UXS4)编码定位于高尔基体的酶,另外三个(UXS3、UXS5和UXS6)编码定位于细胞质的酶。在本报告中,我们研究了这些UXS基因在为木聚糖和木葡聚糖生物合成提供UDP-木糖方面的作用。表达分析表明,这六个UXS基因在茎、根-下胚轴和幼苗的不同细胞类型中表现出不同且重叠的表达模式,并且细胞质中UXS的相对酶活性比高尔基体中的高17倍。在这六个UXS基因中,UXS3、UXS5和UXS6在茎中表达最高,且主要在木质部细胞和束间纤维中表达。它们在次生壁形成细胞中的优势表达与UXS3、UXS5和UXS6的表达直接由次生壁NAC主开关激活这一发现一致。虽然UXS1、UXS2和UXS4的同时突变对植物生长和木聚糖生物合成没有产生任何明显影响,但UXS3、UXS5和UXS6的同时下调/突变导致次生壁增厚急剧减少、木质部导管严重变形、木聚糖含量显著降低且其链长没有明显减少以及木聚糖中没有GlcA侧链,这让人联想到一些已知的木聚糖缺陷突变体的表型。此外,用两种木葡聚糖单克隆抗体LM15和LM25进行免疫定位显示,初生壁中木葡聚糖的量显著减少。这些结果表明,定位于细胞质的UXS3、UXS5和UXS6在为木聚糖和木葡聚糖生物合成提供UDP-木糖方面起主要作用。

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