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嗜热毛壳菌家族GH6纤维二糖水解酶Cel6A催化核心模块的结构

Structure of the catalytic core module of the Chaetomium thermophilum family GH6 cellobiohydrolase Cel6A.

作者信息

Thompson Andrew J, Heu Tia, Shaghasi Tarana, Benyamino Romil, Jones Aubrey, Friis Esben P, Wilson Keith S, Davies Gideon J

机构信息

Structural Biology Laboratory, Department of Chemistry, University of York, York YO10 5DD, England.

出版信息

Acta Crystallogr D Biol Crystallogr. 2012 Aug;68(Pt 8):875-82. doi: 10.1107/S0907444912016496. Epub 2012 Jul 7.

Abstract

Cellulases, including cellobiohydrolases and endoglucanases, are important enzymes involved in the breakdown of the polysaccharide cellulose. These catalysts have found widescale industrial applications, particularly in the paper and textile industries, and are now finding use in `second-generation' conversion of biomass to biofuels. Despite this considerable biotechnological application, and undoubted future potential, uncertainty remains as to the exact reaction mechanism of the inverting cellulases found in the GH6 family of carbohydrate-active enzymes. In order to gain additional understanding as to how these societally beneficial biocatalysts function, the crystal structure of a GH6 cellobiohydrolase from Chaetomium thermophilum, CtCel6A, has been solved. This structure reveals a distorted α/β-barrel fold comprising a buried tunnel-like active site quite typical of Cel6A enzymes. Analysis of an enzyme-product complex (cellobiose in the -3 and -2 subsites and cellotetraose in subsites +1 to +4) supports the hypothesis that this group of enzymes act via an atypical single-displacement mechanism. Of particular note in this analysis is an active-centre metal ion, Li(+), the position of which matches the position of the positively charged anomeric carbon of the oxocarbenium-ion-like transition state.

摘要

纤维素酶,包括纤维二糖水解酶和内切葡聚糖酶,是参与多糖纤维素分解的重要酶。这些催化剂已在大规模工业应用中得到广泛应用,尤其是在造纸和纺织工业中,目前正用于生物质向生物燃料的“第二代”转化。尽管有这种相当大的生物技术应用以及无疑的未来潜力,但关于碳水化合物活性酶GH6家族中发现的转化型纤维素酶的确切反应机制仍存在不确定性。为了进一步了解这些对社会有益的生物催化剂的作用方式,已解析了嗜热毛壳菌的GH6纤维二糖水解酶CtCel6A的晶体结构。该结构揭示了一种扭曲的α/β桶状折叠结构,其包含一个埋藏的隧道状活性位点,这是Cel6A酶相当典型的特征。对酶-产物复合物(-3和-2亚位点的纤维二糖以及+1至+4亚位点的纤维四糖)的分析支持了这一假设,即这组酶通过非典型的单位移机制起作用。在该分析中特别值得注意的是一个活性中心金属离子Li(+),其位置与氧鎓离子样过渡态带正电荷的异头碳的位置相匹配。

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