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碳水化合物结合模块定位对热纤梭菌内切葡聚糖酶 CelA 活性的影响。

Influence of positioning of carbohydrate binding module on the activity of endoglucanase CelA of Clostridium thermocellum.

机构信息

School of Biological Sciences, University of the Punjab, Quaid-e-Azam Campus, Lahore 54590, Pakistan.

出版信息

J Biotechnol. 2012 Oct 31;161(3):206-12. doi: 10.1016/j.jbiotec.2012.05.023. Epub 2012 Jul 11.

DOI:10.1016/j.jbiotec.2012.05.023
PMID:22796095
Abstract

This study reports characteristics of different derivatives produced between CelA, a major endoglucanase of Clostridium thermocellum and carbohydrate binding domain of family 3a (CBM3a). In addition to the native form of the endoglucanase containing catalytic and dockerin domains (CelA-CD), its derivatives consisting of catalytic domain without dockerin domain (CelA-C), catalytic domain linked with the binding domain at N-, C- and both termini (CelA-BC, CelA-CB and CelA-BCB, respectively), two catalytic domains cloned in tandem (CelA-CC) and two catalytic domains intervened by a binding domain (CelA-CBC) were expressed in Escherichia coli at levels of 40, 43, 28, 30, 20, 20 and 10%, respectively of the total cell proteins. Specific activities of CelA-CD, CelA-C, CelA-BC, CelA-CB, CelA-CC, CelA-BCB and CelA-CBC against carboxymethyl cellulose (CMC) were 8.1, 7.0, 12.1, 8.5, 11.8, 10.2 and 23.5Umg(-1) enzyme while activities against pre-treated bagasse were 490, 250, 1400, 600, 810, 710 and 2270μmoles reducing sugars released per μmole of the enzyme, respectively, under the assay conditions used. Thus the activities of CelA-BC and CelA-CBC showed nearly 3- and 5-fold increase against pre-treated bagasse as compared to that of the native form of the enzyme, CelA-CD. Molecular modeling studies using MODELLER show that the binding residues of CBM3a and the active site residues of the catalytic domain are more favorably oriented for binding and hydrolysis of the polysaccharide in the case of CelA-BC as compared to those in CelA-CB, which corresponds with higher activity of the former.

摘要

本研究报告了纤维素内切酶 CelA 与碳水化合物结合域家族 3a(CBM3a)之间不同衍生物的特性。除了含有催化域和 dockerin 域的天然形式的内切酶(CelA-CD)外,其衍生物还包括不含 dockerin 域的催化域(CelA-C)、N-、C-和两端连接催化域和结合域的催化域(CelA-BC、CelA-CB 和 CelA-BCB)、串联克隆的两个催化域(CelA-CC)和两个催化域之间由结合域隔开的催化域(CelA-CBC)。这些衍生物在大肠杆菌中的表达水平分别为总细胞蛋白的 40%、43%、28%、30%、20%、20%和 10%。CelA-CD、CelA-C、CelA-BC、CelA-CB、CelA-CC、CelA-BCB 和 CelA-CBC 对羧甲基纤维素(CMC)的比活性分别为 8.1、7.0、12.1、8.5、11.8、10.2 和 23.5Umg(-1)酶,而对预处理过的蔗渣的活性分别为 490、250、1400、600、810、710 和 2270μmoles 还原糖释放每微米摩尔酶,在使用的测定条件下。因此,与天然形式的酶 CelA-CD 相比,CelA-BC 和 CelA-CBC 对预处理过的蔗渣的活性分别提高了近 3 倍和 5 倍。使用 MODELLER 进行的分子建模研究表明,与 CelA-CB 相比,CelA-BC 中 CBM3a 的结合残基和催化域的活性位点残基更有利于多糖的结合和水解,这与前者的较高活性相对应。

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