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High-Temperature Enzymatic Breakdown of Cellulose

机译:高温纤维素分解酶

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Cellulose is an abundant and renewable biopolymer that can be used for biofuel generation; however, structural entrapment with other cell wall components hinders enzyme-substrate interactions, a key bottleneck for ethanol production. Biomass is routinely subjected to treatments that facilitate cellulase-cellulose contacts. Cellulases and glucosidases act by hydrolyzing glycosidic bonds of linear glucose β-1,4-linked polymers, producing glucose. Here we describe eight high-temperature-operating cellulases (TCel enzymes) identified from a survey of thermobacterial and archaeal genomes. Three TCel enzymes preferentially hydrolyzed soluble cellulose, while two preferred insoluble cellulose such as cotton linters and filter paper. TCel enzymes had temperature optima ranging from 85°C to 102°C. TCel enzymes were stable, retaining 80% of initial activity after 120 h at 85°C. Two modes of cellulose breakdown, i.e., with endo- and exo-acting glucanases, were detected, and with two-enzyme combinations at 85°C, synergistic cellulase activity was observed for some enzyme combinations.
机译:纤维素是一种丰富的可再生生物聚合物,可用于生产生物燃料。然而,与其他细胞壁成分的结构截留阻碍了酶-底物的相互作用,这是乙醇生产的关键瓶颈。通常对生物质进行促进纤维素酶与纤维素接触的处理。纤维素酶和葡糖苷酶通过水解线性葡萄糖β-1,4-连接的聚合物的糖苷键来产生葡萄糖。在这里,我们描述了从高温细菌和古细菌基因组调查中确定的八种高温操作纤维素酶(TCel酶)。三种TCel酶优先水解可溶性纤维素,而两种优选的不溶纤维素例如棉短绒和滤纸。 TCel酶的最适温度为85℃至102℃。 TCel酶稳定,在85°C下120 h后仍保持80%的初始活性。检测到了两种纤维素分解模式,即具有内切和外切作用的葡聚糖酶,并且在85℃下通过两种酶的组合,观察到了某些酶组合的协同纤维素酶活性。

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