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在拟南芥 bglu45 突变体中展示水稻 Os4BGlu14、Os4BGlu16 和 Os4BGlu18 的木质素 β-葡萄糖苷酶活性。

Demonstration of monolignol β-glucosidase activity of rice Os4BGlu14, Os4BGlu16 and Os4BGlu18 in Arabidopsis thaliana bglu45 mutant.

机构信息

Faculty of Science at Sriracha, Kasetsart University, Sriracha Campus, Chonburi, 20230, Thailand; Center for Biomolecular Structure, Function and Application, Suranaree University of Technology, Nakhon Ratchasima, 30000, Thailand.

Graduate School of Biotechnology, Kyung-Hee University, Yongin, 17104, South Korea.

出版信息

Plant Physiol Biochem. 2018 Jun;127:223-230. doi: 10.1016/j.plaphy.2018.03.026. Epub 2018 Mar 28.

Abstract

The glycoside hydrolase family 1 members Os4BGlu14, Os4BGlu16, and Os4BGlu18 were proposed to be rice monolignol β-glucosidases. In vitro studies demonstrated that the Os4BGlu16 and Os4BGlu18 hydrolyze the monolignol glucosides coniferin and syringin with high efficiency compared to other substrates. The replacement of the conserved catalytic acid/base glutamate residue by a nonionizable glutamine residue in Os4BGlu14 suggested that it may be inactive as a β-glucosidase. Here, we investigated the activities of Os4BGlu14, Os4BGlu16, and Os4BGlu18 in planta by recombinant expression of their genes in the Arabidopsis bglu45-2 (monolignol β-glucosidase) mutant and analysis of monolignol glucosides by ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MSMS). The bglu45-2 line exhibits elevated monolignol glucoside levels, but lower amounts of coniferin, syringin, and p-coumaryl alcohol glucoside were seen in Arabidopsis bglu45-2 rescued lines complemented by the Os4BGlu14, Os4BGlu16, and Os4BGlu18 genes. These data suggest that the bglu45-2 mutant has a broader effect on monolignols than previously reported and that the Os4BGlu14, Os4BGlu16 and Os4BGlu18 proteins act as monolignol β-glucosidases to complement the defect. An OsBGlu16-GFP fusion protein localized to the cell wall. This apoplastic localization and the effect of these enzymes on monolignol glucoside levels suggest monolignol glucosides from the vacuole may meet the monolignol β-glucosidases, despite their different localization.

摘要

糖苷水解酶家族 1 成员 Os4BGlu14、Os4BGlu16 和 Os4BGlu18 被提议为水稻单木质素 β-葡萄糖苷酶。体外研究表明,与其他底物相比,Os4BGlu16 和 Os4BGlu18 能高效水解单木质素葡萄糖苷松柏苷和丁香苷。Os4BGlu14 中保守的催化酸碱谷氨酸残基被非电离谷氨酰胺残基取代,表明其可能作为β-葡萄糖苷酶失活。在这里,我们通过在拟南芥 bglu45-2(单木质素 β-葡萄糖苷酶)突变体中重组表达这些基因,并通过超高效液相色谱-串联质谱(UPLC-MSMS)分析单木质素葡萄糖苷,研究了 Os4BGlu14、Os4BGlu16 和 Os4BGlu18 在植物体内的活性。bglu45-2 系表现出升高的单木质素葡萄糖苷水平,但在由 Os4BGlu14、Os4BGlu16 和 Os4BGlu18 基因拯救的拟南芥 bglu45-2 恢复系中,观察到松柏苷、丁香苷和对香豆醇葡萄糖苷的含量较低。这些数据表明,bglu45-2 突变体对单木质素有比以前报道更广泛的影响,并且 Os4BGlu14、Os4BGlu16 和 Os4BGlu18 蛋白作为单木质素 β-葡萄糖苷酶来弥补缺陷。OsBGlu16-GFP 融合蛋白定位于细胞壁。这种质外体定位以及这些酶对单木质素葡萄糖苷水平的影响表明,尽管它们的定位不同,来自液泡的单木质素葡萄糖苷可能与单木质素 β-葡萄糖苷酶相遇。

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