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首页> 外文期刊>Applied Microbiology >Molecular and Biochemical Analyses of the GH44 Module of CbMan5B/Cel44A, a Bifunctional Enzyme from the Hyperthermophilic Bacterium Caldicellulosiruptor bescii
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Molecular and Biochemical Analyses of the GH44 Module of CbMan5B/Cel44A, a Bifunctional Enzyme from the Hyperthermophilic Bacterium Caldicellulosiruptor bescii

机译:CbMan5B / Cel44A GH44模块的分子和生化分析,CbMan5B / Cel44A是一种来自嗜热细菌Caldicellulosiruptor bescii的双功能酶。

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A large polypeptide encoded in the genome of the thermophilic bacterium Caldicellulosiruptor bescii was determined to consist of two glycoside hydrolase (GH) modules separated by two carbohydrate-binding modules (CBMs). Based on the detection of mannanase and endoglucanase activities in the N-terminal GH5 and the C-terminal GH44 module, respectively, the protein was designated CbMan5B/Cel44A. A GH5 module with >99% identity from the same organism was characterized previously (X. Su, R. I. Mackie, and I. K. Cann, Appl. Environ. Microbiol. 78:2230-2240, 2012); therefore, attention was focused on CbMan5A/Cel44A-TM2 (or TM2), which harbors the GH44 module and the two CBMs. On cellulosic substrates, TM2 had an optimal temperature and pH of 85°C and 5.0, respectively. Although the amino acid sequence of the GH44 module of TM2 was similar to those of other GH44 modules that hydrolyzed cello-oligosaccharides, cellulose, lichenan, and xyloglucan, it was unique that TM2 also displayed modest activity on mannose-configured substrates and xylan. The TM2 protein also degraded Avicel with higher specific activity than activities reported for its homologs. The GH44 catalytic module is composed of a TIM-like domain and a β-sandwich domain, which consists of one β-sheet at the N terminus and nine β-sheets at the C terminus. Deletion of one or more β-sheets from the β-sandwich domain resulted in insoluble proteins, suggesting that the β-sandwich domain is essential for proper folding of the polypeptide. Combining TM2 with three other endoglucanases from C. bescii led to modest synergistic activities during degradation of cellulose, and based on our results, we propose a model for cellulose hydrolysis and utilization by C. bescii .
机译:确定嗜热细菌Caldicellulosiruptor bescii基因组中编码的大多肽由两个糖苷水解酶(GH)模块组成,该模块被两个碳水化合物结合模块(CBM)隔开。基于分别在N端GH5和C端GH44模块中检测甘露聚糖酶和内切葡聚糖酶活性,将该蛋白命名为CbMan5B / Cel44A。先前已经鉴定了来自同一生物的具有> 99%同一性的GH5模块(X. Su,R. I. Mackie,and I. K. Cann,Appl。Environ。Microbiol。78:2230-2240,2012);因此,注意力集中在包含GH44模块和两个CBM的CbMan5A / Cel44A-TM2(或TM2)上。在纤维素底物上,TM2的最佳温度和pH分别为85°C和5.0。尽管TM2的GH44模块的氨基酸序列与水解纤维寡糖,纤维素,地衣聚糖和木葡聚糖的其他GH44模块的氨基酸序列相似,但TM2在甘露糖构型的底物和木聚糖上也表现出适度的活性是独特的。 TM2蛋白还以比其同源物报道的活性更高的比活性降解了Avicel。 GH44催化模块由TIM样结构域和β夹心结构域组成,后者由N端一个β-折叠和C端九个β-折叠组成。从β-夹心结构域中删除一个或多个β-折叠会产生不溶的蛋白质,这表明β-夹心结构域对于多肽的正确折叠是必不可少的。将TM2与其他来自贝氏梭菌的内切葡聚糖酶结合,可在纤维素降解过程中产生适度的协同活性,根据我们的结果,我们提出了一个用于纤维素酶水解和被贝氏梭菌利用的模型。

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