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碳水化合物结合模块的性质决定了热纤梭菌木聚糖酶 Z 的催化效率。

The nature of the carbohydrate binding module determines the catalytic efficiency of xylanase Z of Clostridium thermocellum.

机构信息

School of Biological Sciences, University of the Punjab, Lahore, Pakistan.

出版信息

J Biotechnol. 2013 Dec;168(4):403-8. doi: 10.1016/j.jbiotec.2013.09.010. Epub 2013 Oct 1.

Abstract

Xylanase Z of Clostridium thermocellum exists as a complex in the cellulosome with N-terminus feruloyl esterase, a carbohydrate binding module (CBM6) and a dockerin domain. To study the role of the binding modules on the activity of XynZ, different variants with the CBM6 attached to the catalytic domain at its C-terminal (XynZ-CB) and N-terminal (XynZ-BC), and the CBM22 attached at N-terminus (XynZ-B'C) were expressed in Escherichia coli at levels around 30% of the total cell proteins. The activities of XynZ-BC, XynZ-CB and XynZ-B'C were 4200, 4180 and 20,700U μM(-1) against birchwood xylan, respectively. Substrate binding studies showed that in case of XynZ-BC and XynZ-CB the substrate birchwood xylan remaining unbound were 51 and 52%, respectively, whereas in the case of XynZ-B'C the substrate remaining unbound was 39% under the assay conditions used. The molecular docking studies showed that the binding site of CBM22 in XynZ-B'C is more exposed and thus available for substrate binding as compared to the tunnel shape binding pocket produced in XynZ-BC and thus hindering the substrate binding. The substrate binding data for the two constructs are in agreement with this explanation.

摘要

热纤梭菌木聚糖酶 Z 存在于纤维小体中,与 N 端阿魏酸酯酶、一个碳水化合物结合模块(CBM6)和一个 dockerin 结构域组成复合物。为了研究结合模块对 XynZ 活性的作用,将不同的变体与 CBM6 连接到催化结构域的 C 端(XynZ-CB)和 N 端(XynZ-BC),以及 CBM22 连接到 N 端(XynZ-B'C),在大肠杆菌中表达,其表达水平约为总细胞蛋白的 30%。XynZ-BC、XynZ-CB 和 XynZ-B'C 对桦木木聚糖的活性分别为 4200、4180 和 20700U μM(-1)。底物结合研究表明,在 XynZ-BC 和 XynZ-CB 的情况下,未结合的底物桦木木聚糖分别为 51%和 52%,而在 XynZ-B'C 的情况下,在使用的测定条件下,未结合的底物为 39%。分子对接研究表明,与 XynZ-BC 中产生的隧道形状结合口袋相比,XynZ-B'C 中 CBM22 的结合位点更暴露,因此更有利于底物结合,从而阻碍了底物结合。这两个结构的底物结合数据与这一解释一致。

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