首页> 美国卫生研究院文献>Plant Physiology >Fructan 1-Exohydrolases. β-(21)-Trimmers during Graminan Biosynthesis in Stems of Wheat? Purification Characterization Mass Mapping and Cloning of Two Fructan 1-Exohydrolase Isoforms
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Fructan 1-Exohydrolases. β-(21)-Trimmers during Graminan Biosynthesis in Stems of Wheat? Purification Characterization Mass Mapping and Cloning of Two Fructan 1-Exohydrolase Isoforms

机译:果胶1-外水解酶。小麦茎中谷物生物合成过程中的β-(21)-微剪?两种果胶1-外水解酶同工型的纯化表征质量定位和克隆

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摘要

Graminan-type fructans are temporarily stored in wheat (Triticum aestivum) stems. Two phases can be distinguished: a phase of fructan biosynthesis (green stems) followed by a breakdown phase (stems turning yellow). So far, no plant fructan exohydrolase enzymes have been cloned from a monocotyledonous species. Here, we report on the cloning, purification, and characterization of two fructan 1-exohydrolase cDNAs (1-FEH w1 and w2) from winter wheat stems. Similar to dicot plant 1-FEHs, they are derived from a special group within the cell wall-type invertases characterized by their low isoelectric points. The corresponding isoenzymes were purified to electrophoretic homogeneity, and their mass spectra were determined by quadrupole-time-of-flight mass spectrometry. Characterization of the purified enzymes revealed that inulin-type fructans [β-(2,1)] are much better substrates than levan-type fructans [β-(2,6)]. Although both enzymes are highly identical (98% identity), they showed different substrate specificity toward branched wheat stem fructans. Although 1-FEH activities were found to be considerably higher during the fructan breakdown phase, it was possible to purify substantial amounts of 1-FEH w2 from young, fructan biosynthesizing wheat stems, suggesting that this isoenzyme might play a role as a β-(2,1)-trimmer throughout the period of active graminan biosynthesis. In this way, the species and developmental stage-specific complex fructan patterns found in monocots might be determined by the relative proportions and specificities of both fructan biosynthetic and breakdown enzymes.
机译:谷物类果聚糖暂时储存在小麦(Triticum aestivum)的茎中。可以区分两个阶段:果聚糖生物合成阶段(绿色茎),然后是分解阶段(茎变成黄色)。到目前为止,还没有从单子叶植物物种中克隆出植物果聚糖外切酶。在这里,我们报道了冬小麦茎上两个果聚糖1-外水解酶cDNA(1-FEH w1和w2)的克隆,纯化和鉴定。与双子叶植物1-FEH相似,它们源自细胞壁型转化酶中的一个特殊组,其特征是其等电点低。将相应的同工酶纯化至电泳均一,并通过四极杆飞行时间质谱法测定其质谱。纯化酶的表征表明,菊粉型果聚糖[β-(2,1)]比莱万型果聚糖[β-(2,6)]底物更好。尽管两种酶高度相同(98%相同),但它们对支链小麦茎果聚糖显示不同的底物特异性。尽管发现果聚糖分解阶段的1-FEH活性要高得多,但仍可以从年轻的果聚糖生物合成小麦茎中纯化出大量的1-FEH w2,这表明该同功酶可能起β-( 2,1)-修剪器在整个活跃的graminan生物合成期间。这样,在单子叶植物中发现的物种和发育阶段特定的复杂果聚糖模式可能取决于果聚糖生物合成酶和分解酶的相对比例和特异性。

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