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玉米中的一种果聚糖外切水解酶可同时降解菊粉和棉子糖,并与玉米中的 1-蔗果三糖共存。

A Fructan Exohydrolase from Maize Degrades Both Inulin and Levan and Co-Exists with 1-Kestotriose in Maize.

机构信息

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops, College of Horticulture, South China Agricultural University, Ministry of Agriculture and Rural Affairs, Guangzhou 510642, China.

Centre for Organismal Studies Heidelberg, Department of Plant Molecular Physiology, University of Heidelberg, 69120 Heidelberg, Germany.

出版信息

Int J Mol Sci. 2021 May 13;22(10):5149. doi: 10.3390/ijms22105149.

Abstract

Enzymes with fructan exohydrolase (FEH) activity are present not only in fructan-synthesizing species but also in non-fructan plants. This has led to speculation about their functions in non-fructan species. Here, a cell wall invertase-related Zm-6&1-FEH2 with no "classical" invertase motif was identified in maize. Following heterologous expression in and in leaves, the enzyme activity of recombinant Zm-6&1-FEH2 displays substrate specificity with respect to inulin and levan. Subcellular localization showed Zm-6&1-FEH2 exclusively localized in the apoplast, and its expression profile was strongly dependent on plant development and in response to drought and abscisic acid. Furthermore, formation of 1-kestotriose, an oligofructan, was detected in vivo and in vitro and could be hydrolyzed by Zm-6&1-FEH2. In summary, these results support that Zm-6&1-FEH2 enzyme from maize can degrade both inulin-type and levan-type fructans, and the implications of the co-existence of Zm-6&1-FEH2 and 1-kestotriose are discussed.

摘要

具有果聚糖外切水解酶(FEH)活性的酶不仅存在于合成果聚糖的物种中,也存在于非果聚糖植物中。这导致了人们对其在非果聚糖物种中的功能的猜测。在这里,在玉米中鉴定到一种与细胞壁转化酶相关的Zm-6&1-FEH2,它没有“经典”转化酶基序。在 和 叶片中的异源表达后,重组Zm-6&1-FEH2 的酶活性对菊粉和果聚糖具有底物特异性。亚细胞定位显示Zm-6&1-FEH2 仅定位于质外体,其表达谱强烈依赖于植物发育,并对干旱和脱落酸有反应。此外,在体内和体外检测到 1-棉子糖的形成,一种低聚果聚糖,可被 Zm-6&1-FEH2 水解。总之,这些结果支持来自玉米的Zm-6&1-FEH2 酶可以降解菊粉型和果聚糖型果聚糖,并且讨论了 Zm-6&1-FEH2 和 1-棉子糖共存的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b00/8152283/ee8f0bfc4316/ijms-22-05149-g001.jpg

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