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Surface plasmon resonance imaging of the enzymatic degradation of cellulose microfibrils

机译:纤维素微纤维酶促降解的表面等离子体共振成像

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摘要

We present the first study of the interaction of a cellulase enzyme mixture with cellulose microfibrils using surface plasmon resonance (SPR) imaging. The cellulose microfibrils, obtained from the bacterium Acetobacter xylinum, were heterogeneously distributed on a thin layer of thioglucose deposited onto a gold film. SPR images collected as a function of time allowed us to observe the adsorption of the enzymes onto both the cellulose microfibrils and the bare surface, and the subsequent degradation of the cellulose microfibrils in real time. In particular, we were able to characterize the decrease in the thickness and variations in thickness of the cellulose microfibril-coated regions with time, and to define a characteristic time for the removal of cellulose from the surface. These results demonstrate the distinct advantage of the SPR imaging technique for measuring the effectiveness of enzymes on cellulose microfibrils and provide useful metrics of enzyme activity that are of relevance to the cellulosic ethanol industry.
机译:我们提出了使用表面等离振子共振(SPR)成像的纤维素酶混合物与纤维素微纤维相互作用的第一项研究。从木醋杆菌获得的纤维素微纤维被异质地分布在沉积在金膜上的硫葡萄糖薄层上。随时间变化而收集的SPR图像使我们能够实时观察酶在纤维素微纤维和裸露表面上的吸附情况,以及随后纤维素微纤维的降解情况。尤其是,我们能够表征随着时间的推移,纤维素微原纤维涂层区域的厚度减少和厚度变化,并定义了从表面去除纤维素的特征时间。这些结果证明了SPR成像技术在测量纤维素微纤维上酶的有效性方面的独特优势,并提供了与纤维素乙醇工业相关的酶活性的有用指标。

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