...
首页> 外文期刊>Analytical and Bioanalytical Chemistry >Use of 18O water and ESI-MS detection in subsite characterisation and investigation of the hydrolytic action of an endoglucanase
【24h】

Use of 18O water and ESI-MS detection in subsite characterisation and investigation of the hydrolytic action of an endoglucanase

机译:18 O水和ESI-MS检测在亚位点表征和内切葡聚糖酶水解作用研究中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

We present a novel method for investigating subsite-substrate interactions of glycoside hydrolases and the determination of the oligosaccharide cleavage point based on the analysis of the hydrolysis products produced in the presence of 18O-labelled water. Conventional techniques for such determination of the hydrolysis pattern call for the chemical modification of the substrate, whereas the method presented makes it possible to use natural substrates, utilising the selectivity and sensitivity of mass spectrometry. This method is very useful for the detection and analysis of enzyme-catalysed hydrolysis, provided that the conditions are chosen where 18O incorporation without the presence of the enzyme is absent or undetectable. Such conditions were found and used in incubations of cellopentaose with the well-characterised endoglucanase Cel5A from Bacillus agaradhaerens. We were able to confirm that the preferred glycoside bond to be hydrolysed is the third one counting from the non-reducing end of the cellopentaose. Thus, cellopentaose prefers to bind from the –3 to the +2 subsites, which is in accordance with published crystallographic data. The main advantage of the method presented is that there is no need for a priori chemical modification/labelling of oligosaccharide substrates, which are processes that can disturb the enzyme–substrate interaction. From 18O incorporation we could demonstrate that the enzyme also has an oxygen-exchange activity on cellotriose and cellobiose. This is in agreement with the mechanism for transglycosylation and indicates that it is possible for the enzyme to perform such reactions.
机译:基于在18 O标记水存在下产生的水解产物的分析,我们提出了一种研究糖苷水解酶的亚位-底物相互作用并确定寡糖裂解点的新方法。用于这种水解模式确定的常规技术要求对底物进行化学修饰,而提出的方法使得利用质谱的选择性和灵敏度可以使用天然底物。该方法对于检测和分析酶催化的水解非常有用,条件是选择不存在或无法检测到不存在酶的18 O掺入的条件。发现了这样的条件,并将其用于细胞戊糖与来自琼脂芽孢杆菌的充分表征的内切葡聚糖酶Cel5A的孵育。我们能够证实,优选的要水解的糖苷键是从纤维戊糖的非还原端开始计数的第三个键。因此,cellopentaose倾向于从–3到+2亚位点结合,这与公布的晶体学数据一致。提出的方法的主要优点是不需要对低聚糖底物进行先验的化学修饰/标记,而这些过程会干扰酶与底物的相互作用。从18 O掺入,我们可以证明该酶对纤维三糖和纤维二糖也具有氧交换活性。这与转糖基化的机理一致,表明该酶可能进行这种反应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号