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黑麦草中一种1-果聚糖外切水解酶(1-FEH)的克隆、基因定位及功能分析,该酶与果聚糖合成而非果聚糖动员有关。

Cloning, gene mapping, and functional analysis of a fructan 1-exohydrolase (1-FEH) from Lolium perenne implicated in fructan synthesis rather than in fructan mobilization.

作者信息

Lothier Jérémy, Lasseur Bertrand, Le Roy Katrien, Van Laere André, Prud'homme Marie-Pascale, Barre Philippe, Van den Ende Wim, Morvan-Bertrand Annette

机构信息

UMR INRA-UCBN 950 EVA Ecophysiologie Végétale, Agronomie et Nutritions NCS, Université de Caen, Esplanade de la Paix, 14032 Caen cedex, France.

出版信息

J Exp Bot. 2007;58(8):1969-83. doi: 10.1093/jxb/erm053. Epub 2007 Apr 24.

Abstract

Fructans, which are beta-(2,1) and/or beta-(2,6) linked polymers of fructose, are important storage carbohydrates in many plants. They are mobilized via fructan exohydrolases (FEHs). The cloning, mapping, and functional analysis of the first 1-FEH (EC 3.2.1.153) from Lolium perenne L. var. Bravo is described here. By screening a perennial ryegrass cDNA library, a 1-FEH cDNA named Lp1-FEHa was cloned. The Lp1-FEHa deduced protein has a low iso-electric point (5.22) and it groups together with plant FEHs and cell-wall type invertases. The deduced amino acid sequence shows 75% identity to wheat 1-FEH w2. The Lp1-FEHa gene was mapped at a distal position on the linkage group 3 (LG3). Functional characterization of the recombinant protein in Pichia pastoris demonstrated that it had high FEH activity towards 1-kestotriose, 1,1-kestotetraose, and inulin, but low activity against 6-kestotriose and levan. Like other fructan-plant FEHs, no hydrolase activity could be detected towards sucrose, convincingly demonstrating that the enzyme is not a classic invertase. The expression pattern analysis of Lp1-FEHa revealed transcript accumulation in leaf tissues accumulating fructans while transcript level was low in the photosynthetic tissues. The high expression level of this 1-FEH in conditions of active fructan synthesis, together with its low expression level when fructan contents are low, suggest that it might play a role as a beta-(2,1) trimming enzyme acting during fructan synthesis in concert with fructan synthesis enzymes.

摘要

果聚糖是果糖的β-(2,1)和/或β-(2,6)连接的聚合物,是许多植物中重要的贮藏碳水化合物。它们通过果聚糖外切水解酶(FEHs)进行动员。本文描述了来自黑麦草品种Bravo的首个1-FEH(EC 3.2.1.153)的克隆、定位和功能分析。通过筛选多年生黑麦草cDNA文库,克隆了一个名为Lp1-FEHa的1-FEH cDNA。Lp1-FEHa推导的蛋白质具有低等电点(5.22),并与植物FEHs和细胞壁型转化酶归为一类。推导的氨基酸序列与小麦1-FEH w2具有75%的同一性。Lp1-FEHa基因定位在连锁群3(LG3)的远端位置。在毕赤酵母中对重组蛋白的功能表征表明,它对1-蔗果三糖、1,1-蔗果四糖和菊粉具有高FEH活性,但对6-蔗果三糖和左聚糖活性较低。与其他果聚糖植物FEHs一样,未检测到对蔗糖的水解酶活性,令人信服地证明该酶不是经典的转化酶。Lp1-FEHa的表达模式分析显示,在积累果聚糖的叶片组织中有转录物积累,而在光合组织中转录水平较低。这种1-FEH在果聚糖合成活跃条件下的高表达水平,以及在果聚糖含量低时的低表达水平,表明它可能作为一种β-(2,1)修剪酶,在果聚糖合成过程中与果聚糖合成酶协同发挥作用。

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