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首页> 外文期刊>Plant Physiology and Biochemistry >Divergent modes of action on xyloglucan of two isoenzymes of xyloglucan endo-transglycosylase from Tropaeolum majus
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Divergent modes of action on xyloglucan of two isoenzymes of xyloglucan endo-transglycosylase from Tropaeolum majus

机译:Tropaeolum majus的两种木葡聚糖内转糖基酶同工酶对木葡聚糖的不同作用方式

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Two isoenzymes of xyloglucan endo-transglycosylase (XET, EC 2.4.1.207) were identified in nasturtium (Tropaeolum majus L.), so far. One is located in seeds (sXET) and is expressed during germination. The other enzyme (eXET) is confined to epicotyls and other growing regions. In this work, we examined catalytic properties of the two XETs and tried to find a correlation with their presumed functions. The two enzymes had similar isoelectric points at about pH 6.5 but had different pH-activity profiles and differed in K-m values for xyloglucan-derived oligosaccharides (XGOS) as acceptor substrates. Moreover, they showed clearly distinct preferences in selecting the site of attack on xyloglucan (XG) molecules. While sXET selected the site of cleavage on XG molecules stochastically along the length of their polyglucose main chain and preferred low-molecular mass (MM) XGOS as glycosyl acceptors, eXET attacked the substrate molecule predominantly near the reducing end and showed no preference as to the size of XGOS acceptors. These properties corroborate well with the proposed functions of the two isoenzymes: the sXET plays a role in degrading XG reserves in seeds during germination, whereas the eXET is engaged in cell wall rearrangement and integration of new XG molecules into the preexisting cell wall structure during growth. (C) 2003 Editions scientifiques et medicales Elsevier SAS. All rights reserved. [References: 22]
机译:迄今为止,在金莲花(Tropaeolum majus L.)中鉴定出了两种木葡聚糖内转糖基化酶(XET,EC 2.4.1.207)的同工酶。一种位于种子(sXET)中,在发芽过程中表达。另一种酶(eXET)局限于表皮和其他生长区域。在这项工作中,我们检查了两个XET的催化性能,并试图找到与其假定功能的相关性。两种酶在大约pH 6.5时具有相似的等电点,但具有不同的pH活性曲线,并且木糖葡聚糖衍生的寡糖(XGOS)作为受体底物的K-m值也不同。此外,他们在选择对木葡聚糖(XG)分子的攻击部位时表现出明显不同的偏好。尽管sXET随机选择XG分子沿其聚葡萄糖主链的长度进行切割的位点,并且首选低分子质量(MM)XGOS作为糖基受体,但eXET主要攻击还原端附近的底物分子,并且对XG分子没有偏好。 XGOS受体的大小。这些特性与两种同工酶的拟议功能很好地证实:sXET在发芽过程中起到降解种子中XG储备的作用,而eXET在生长过程中参与细胞壁重排以及将新的XG分子整合到先前存在的细胞壁结构中。 (C)2003版《科学与医学》 Elsevier SAS。版权所有。 [参考:22]

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