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使用低分子量木葡聚糖寡糖的动力学分析确定了杨树木葡聚糖内转糖基酶的催化机制。

Kinetic analysis using low-molecular mass xyloglucan oligosaccharides defines the catalytic mechanism of a Populus xyloglucan endotransglycosylase.

作者信息

Saura-Valls Marc, Fauré Régis, Ragàs Sergi, Piens Kathleen, Brumer Harry, Teeri Tuula T, Cottaz Sylvain, Driguez Hugues, Planas Antoni

机构信息

Laboratory of Biochemistry, Institut Químic de Sarrià, Universitat Ramon Llull, 08017 Barcelona, Spain.

出版信息

Biochem J. 2006 Apr 1;395(1):99-106. doi: 10.1042/BJ20051396.

Abstract

Plant XETs [XG (xyloglucan) endotransglycosylases] catalyse the transglycosylation from a XG donor to a XG or low-molecular-mass XG fragment as the acceptor, and are thought to be important enzymes in the formation and remodelling of the cellulose-XG three-dimensional network in the primary plant cell wall. Current methods to assay XET activity use the XG polysaccharide as the donor substrate, and present limitations for kinetic and mechanistic studies of XET action due to the polymeric and polydisperse nature of the substrate. A novel activity assay based on HPCE (high performance capillary electrophoresis), in conjunction with a defined low-molecular-mass XGO {XG oligosaccharide; (XXXGXXXG, where G=Glcbeta1,4- and X=[Xylalpha1,6]Glcbeta1,4-)} as the glycosyl donor and a heptasaccharide derivatized with ANTS [8-aminonaphthalene-1,3,6-trisulphonic acid; (XXXG-ANTS)] as the acceptor substrate was developed and validated. The recombinant enzyme PttXET16A from Populus tremula x tremuloides (hybrid aspen) was characterized using the donor/acceptor pair indicated above, for which preparative scale syntheses have been optimized. The low-molecular-mass donor underwent a single transglycosylation reaction to the acceptor substrate under initial-rate conditions, with a pH optimum at 5.0 and maximal activity between 30 and 40 degrees C. Kinetic data are best explained by a ping-pong bi-bi mechanism with substrate inhibition by both donor and acceptor. This is the first assay for XETs using a donor substrate other than polymeric XG, enabling quantitative kinetic analysis of different XGO donors for specificity, and subsite mapping studies of XET enzymes.

摘要

植物木葡聚糖内转糖基酶(XETs)催化木葡聚糖供体向作为受体的木葡聚糖或低分子量木葡聚糖片段的转糖基化反应,被认为是植物初生细胞壁中纤维素 - 木葡聚糖三维网络形成和重塑过程中的重要酶类。目前测定XET活性的方法使用木葡聚糖多糖作为供体底物,但由于底物的聚合性和多分散性,在XET作用的动力学和机制研究方面存在局限性。我们开发并验证了一种基于高效毛细管电泳(HPCE)的新型活性测定方法,该方法使用特定的低分子量木葡聚糖寡糖(XGO;(XXXGXXXG,其中G = Glcβ1,4 - ,X = [Xylα1,6]Glcβ1,4 - ))作为糖基供体,以及用8 - 氨基萘 - 1,3,6 - 三磺酸(ANTS;(XXXG - ANTS))衍生化的七糖作为受体底物。使用上述供体/受体对,对来自欧洲山杨×美洲山杨(杂交白杨)的重组酶PttXET16A进行了表征,其制备规模的合成已得到优化。在初始速率条件下,低分子量供体与受体底物发生单一转糖基化反应,最适pH为5.0,在30至40摄氏度之间活性最高。动力学数据最好用乒乓双底物机制来解释,供体和受体都会产生底物抑制。这是首次使用除聚合木葡聚糖以外的供体底物对XETs进行测定,能够对不同XGO供体进行特异性的定量动力学分析以及对XET酶进行亚位点定位研究。

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