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大麦(Hordeum vulgare L.)木葡聚糖木葡糖基转移酶HvXET6的底物特异性和催化机制

Substrate specificity and catalytic mechanism of a xyloglucan xyloglucosyl transferase HvXET6 from barley (Hordeum vulgare L.).

作者信息

Hrmova Maria, Farkas Vladimir, Harvey Andrew J, Lahnstein Jelle, Wischmann Bente, Kaewthai Nomchit, Ezcurra Inés, Teeri Tuula T, Fincher Geoffrey B

机构信息

School of Agriculture, Food and Wine, Australian Centre for Plant Functional Genomics, University of Adelaide, Australia.

出版信息

FEBS J. 2009 Jan;276(2):437-56. doi: 10.1111/j.1742-4658.2008.06791.x. Epub 2008 Dec 4.

Abstract

A family 16 glycoside hydrolase, xyloglucan xyloglucosyl transferase (EC 2.4.1.207), also known as xyloglucan endotransglycosylase (XET), and designated isoenzyme HvXET6, was purified approximately 400-fold from extracts of young barley seedlings. The complete amino acid sequence of HvXET6 was deduced from the nucleotide sequence of a near full-length cDNA, in combination with tryptic peptide mapping. An additional five to six isoforms or post-translationally modified XET enzymes were detected in crude seedling extracts of barley. The HvXET6 isoenzyme was expressed in Pichia pastoris, characterized and compared with the previously purified native HvXET5 isoform. Barley HvXET6 has a similar apparent molecular mass of 33-35 kDa to the previously purified HvXET5 isoenzyme, but the two isoenzymes differ in their isoelectric points, pH optima, kinetic properties and substrate specificities. The HvXET6 isoenzyme catalyses transfer reactions between xyloglucans and soluble cellulosic substrates, using oligo-xyloglucosides as acceptors, but at rates that are significantly different from those observed for HvXET5. No hydrolytic activity could be detected with either isoenzyme. Comparisons of the reaction rates using xyloglucan or hydroxyethyl cellulose as donors and a series of cellodextrins as acceptors indicated that the acceptor site of HvXET can accommodate five glucosyl residues. Molecular modelling supported this conclusion and further confirmed the ability of the enzyme's active site to accommodate xyloglucan and cellulosic substrates. The two HvXETs followed a ping-pong (Bi, Bi) rather than a sequential reaction mechanism.

摘要

一种家族16糖苷水解酶,木葡聚糖木葡糖基转移酶(EC 2.4.1.207),也称为木葡聚糖内转糖基酶(XET),命名为同工酶HvXET6,从幼嫩大麦幼苗提取物中纯化了约400倍。结合胰蛋白酶肽图谱,从近乎全长的cDNA核苷酸序列推导得出HvXET6的完整氨基酸序列。在大麦幼苗粗提物中检测到另外五到六种同工型或翻译后修饰的XET酶。HvXET6同工酶在毕赤酵母中表达,进行了表征并与先前纯化的天然HvXET5同工型进行了比较。大麦HvXET6与先前纯化的HvXET5同工酶具有相似的表观分子量,为33 - 35 kDa,但这两种同工酶在等电点、最适pH、动力学性质和底物特异性方面存在差异。HvXET6同工酶催化木葡聚糖与可溶性纤维素底物之间的转移反应,使用低聚木葡糖苷作为受体,但反应速率与HvXET5显著不同。两种同工酶均未检测到水解活性。使用木葡聚糖或羟乙基纤维素作为供体以及一系列纤维糊精作为受体的反应速率比较表明,HvXET的受体位点可容纳五个葡萄糖基残基。分子建模支持了这一结论,并进一步证实了该酶活性位点容纳木葡聚糖和纤维素底物的能力。两种HvXET遵循乒乓(Bi,Bi)而非顺序反应机制。

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