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将木聚糖结合模块与低聚葡萄糖氧化酶融合可提高活性并促进稳定固定化。

Fusion of a xylan-binding module to gluco-oligosaccharide oxidase increases activity and promotes stable immobilization.

作者信息

Vuong Thu V, Master Emma R

机构信息

Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto, Ontario, Canada.

出版信息

PLoS One. 2014 Apr 15;9(4):e95170. doi: 10.1371/journal.pone.0095170. eCollection 2014.

Abstract

The xylan-binding module Clostridium thermocellum CBM22A was successfully fused to a gluco-oligosaccharide oxidase, GOOX-VN, from Sarocladium strictum via a short TP linker, allowing the fused protein to effectively bind different xylans. The presence of the CtCBM22A at the N-terminal of GOOX-VN increased catalytic activity on mono- and oligo-saccharides by 2-3 fold while not affecting binding affinity to these substrates. Notably, both GOOX-VN and its CBM fusion also showed oxidation of xylo-oligosaccharides with degrees of polymerization greater than six. Whereas fusion to CtCBM22A did not alter the thermostability of GOOX-VN or reduce substrate inhibition, CtCBM22A_GOOX-VN could be immobilized to insoluble oat spelt xylan while retaining wild-type activity. QCM-D analysis showed that the fused enzyme remained bound during oxidation. These features could be harnessed to generate hemicellulose-based biosensors that detect and quantify the presence of different oligosaccharides.

摘要

通过一个短的TP接头,热纤梭菌木聚糖结合模块CBM22A成功地与来自严格帚霉的低聚葡萄糖氧化酶GOOX-VN融合,使融合蛋白能够有效地结合不同的木聚糖。GOOX-VN的N端存在CtCBM22A,使对单糖和寡糖的催化活性提高了2至3倍,同时不影响对这些底物的结合亲和力。值得注意的是,GOOX-VN及其CBM融合蛋白也显示出对聚合度大于6的木寡糖的氧化作用。虽然与CtCBM22A融合并没有改变GOOX-VN的热稳定性或降低底物抑制,但CtCBM22A_GOOX-VN可以固定在不溶性燕麦spelto木聚糖上,同时保留野生型活性。QCM-D分析表明,融合酶在氧化过程中保持结合状态。这些特性可用于开发基于半纤维素的生物传感器,以检测和定量不同寡糖的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f139/3988151/f3044a53d389/pone.0095170.g001.jpg

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