首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The inhibition of hemicellulosic sugars on cellulose hydrolysis are highly dependant on the cellulase productive binding, processivity, and substrate surface charges
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The inhibition of hemicellulosic sugars on cellulose hydrolysis are highly dependant on the cellulase productive binding, processivity, and substrate surface charges

机译:对纤维素水解的半纤维素糖的抑制高度依赖于纤维素酶生产性结合,加工性和基板表面电荷

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In this study, the influence of major hemicellulosic sugars (mannose and xylose) on cellulose hydrolysis and major enzyme activities were evaluated by using both commercial enzyme cocktail and purified cellulase monocomponents over a "library" of cellulosic substrates. Surprisingly, the results showed that unlike glucose, mannose/xylose did not inhibit individual cellulase activities but significantly decreased their hydrolytic performance on cellulose substrates. When various enzyme-substrate interactions (e.g. adsorption/desorption, productive binding, and processive moving) were evaluated, it appeared that these hemicellulosic sugars significantly reduced the productive binding and processivity of Cel7A, which in turn limited cellulase hydrolytic efficacy. Among a range of major cellulose characteristics (e.g. crystallinity, degree of polymerization, accessibility, and surface charges), the acid group content of the cellulosic substrates seemed to be the main driver that determined the extent of hemicellulosic sugar inhibition. Our results provided new insights for better understanding the sugar inhibition mechanisms of cellulose hydrolysis.
机译:在这项研究中,通过在纤维素基质的“文库”上,通过使用两种商业酶鸡尾酒和纯化的纤维素酶单一组分来评价主要半纤维糖(Mannose和木糖)对纤维素水解和主要酶活性的影响。令人惊讶的是,结果表明,与葡萄糖不同,甘露糖/木糖不抑制单个纤维素酶活性,但显着降低了纤维素基材上的水解性能。当评估各种酶底物相互作用时,似乎这些半纤维素糖显着降低了CEL7A的生产性结合和加工性,其依次有限的纤维素酶水解功效。在一系列主要纤维素特性(例如,结晶度,聚合度,可用性和表面电荷)中,纤维素基材的酸基含量似乎是确定半纤维素糖抑制程度的主要驱动器。我们的结果为更好地理解纤维素水解的糖抑制机制提供了新的见解。

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