Revealing Nature’s Cellulase Diversity: The Digestion Mechanism of Caldicellulosiruptor bescii CelA

纤维素酶 纤维素 化学 生物化学
作者
Roman Brunecky,Markus Alahuhta,Qi Xu,Bryon S. Donohoe,Michael F. Crowley,Irina Kataeva,Sungjae Yang,Michael G. Resch,Michael W. W. Adams,V.V. Lunin,Michael E. Himmel,Yannick J. Bomble
出处
期刊:Science [American Association for the Advancement of Science (AAAS)]
卷期号:342 (6165): 1513-1516 被引量:266
标识
DOI:10.1126/science.1244273
摘要

Most fungi and bacteria degrade plant cell walls by secreting free, complementary enzymes that hydrolyze cellulose; however, some bacteria use large enzymatic assemblies called cellulosomes, which recruit complementary enzymes to protein scaffolds. The thermophilic bacterium Caldicellulosiruptor bescii uses an intermediate strategy, secreting many free cellulases that contain multiple catalytic domains. One of these, CelA, comprises a glycoside hydrolase family 9 and a family 48 catalytic domain, as well as three type III cellulose-binding modules. In the saccharification of a common cellulose standard, Avicel, CelA outperforms mixtures of commercially relevant exo- and endoglucanases. From transmission electron microscopy studies of cellulose after incubation with CelA, we report morphological features that suggest that CelA not only exploits the common surface ablation mechanism driven by general cellulase processivity, but also excavates extensive cavities into the surface of the substrate. These results suggest that nature's repertoire of cellulose digestion paradigms remain only partially discovered and understood.
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