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Molecular-Scale Investigations of Cellulose Microstructure during Enzymatic Hydrolysis

机译:酶水解过程中纤维素微结构的分子尺度研究

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Changes in cellulose microstructure have been proposed to occur throughout hydrolysis that impact enzyme access and hydrolysis rates. However, there are very few direct observations of such changes in ongoing reactions. In this study, changes in the microstructure of cellulose are measured by simultaneous confocal and atomic force microscopy and are correlated to hydrolysis extents and quantities of bound enzyme in the reaction. Minimally processed and never-dried cellulose I was hydrolyzed by a purified cellobiohydrolase, Trichoderma reesei Cel7A. Early in the reaction (~30% hydrolysis), at high hydrolysis rates and high bound cellulase quantities, untwisting of cellulose microfibrils was observed. As the hydrolysis reaction neared completion (> 80% hydrolysis), extensively thinned microfibrils (diameters of 3-5 nm) and channels (0.3-0.6 nm deep) along the lengths of the microfibrils were observed. The prominent microstructural changes in cellulose due to cellobiohydrolase action are discussed in the context of the overall hydrolysis reaction.
机译:已经提出,在整个水解过程中会发生纤维素微结构的变化,这会影响酶的进入和水解速率。但是,几乎没有直接观察到正在进行的反应中有这种变化。在这项研究中,纤维素的微观结构的变化是通过同时共聚焦和原子力显微镜测量的,并且与反应中水解程度和结合酶的量相关。经过最少处理且从未干燥的纤维素I被纯化的纤维二糖水解酶里氏木霉Cel7A水解。反应初期(约30%水解),在高水解速率和高结合纤维素酶量下,观察到纤维素微纤维解捻。当水解反应接近完成(> 80%水解)时,观察到沿微纤丝长度方向显着变细的微纤丝(直径为3-5 nm)和通道(深0.3-0.6 nm深)。在整个水解反应的背景下,讨论了由于纤维二糖水解酶作用引起的纤维素中显着的微观结构变化。

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