首页> 美国卫生研究院文献>Applied and Environmental Microbiology >EndB a Multidomain Family 44 Cellulase from Ruminococcus flavefaciens 17 Binds to Cellulose via a Novel Cellulose-Binding Module and to Another R. flavefaciens Protein via a Dockerin Domain
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EndB a Multidomain Family 44 Cellulase from Ruminococcus flavefaciens 17 Binds to Cellulose via a Novel Cellulose-Binding Module and to Another R. flavefaciens Protein via a Dockerin Domain

机译:EndB是来自Ruminococcus flavefaciens 17的多域家族44纤维素酶通过新型纤维素结合模块与纤维素结合并通过Dockerin域与另一个R. flavefaciens蛋白结合

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摘要

The mechanisms by which cellulolytic enzymes and enzyme complexes in Ruminococcus spp. bind to cellulose are not fully understood. The product of the newly isolated cellulase gene endB from Ruminococcus flavefaciens 17 was purified as a His-tagged product after expression in Escherichia coli and found to be able to bind directly to crystalline cellulose. The ability to bind cellulose is shown to be associated with a novel cellulose-binding module (CBM) located within a region of 200 amino acids that is unrelated to known protein sequences. EndB (808 amino acids) also contains a catalytic domain belonging to glycoside hydrolase family 44 and a C-terminal dockerin-like domain. Purified EndB is also shown to bind specifically via its dockerin domain to a polypeptide of ca. 130 kDa present among supernatant proteins from Avicel-grown R. flavefaciens that attach to cellulose. The protein to which EndB attaches is a strong candidate for the scaffolding component of a cellulosome-like multienzyme complex recently identified in this species (S.-Y. Ding et al., J. Bacteriol. 183:1945–1953, 2001). It is concluded that binding of EndB to cellulose may occur both through its own CBM and potentially also through its involvement in a cellulosome complex.
机译:Ruminococcus spp中的纤维素分解酶和酶复合物的机制。与纤维素的结合尚不完全清楚。在大肠杆菌中表达后,将新分离的来自黄褐肉球菌17的纤维素酶基因endB的产物纯化为His标签的产物,发现其能够直接结合至结晶纤维素。已显示结合纤维素的能力与位于200个氨基酸的区域内的新型纤维素结合模块(CBM)相关,该模块与已知的蛋白质序列无关。 EndB(808个氨基酸)还包含一个属于糖苷水解酶家族44的催化结构域和一个C端类似dockerin的结构域。还显示了纯化的EndB通过其dockerin域与ca的多肽特异性结合。 130 kDa存在于附着于纤维素的Avicel生长的黄曲霉上清蛋白中。 EndB所附着的蛋白质是该物种最近鉴定出的纤维素样多酶复合物的骨架成分的强力候选者(S.-Y. Ding等人,J。Bacteriol。183:1945-1953,2001)。结论是,EndB与纤维素的结合既可以通过其自身的CBM发生,也可以通过其与纤维素复合物的结合而发生。

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