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首页> 外文期刊>Applied and Environmental Microbiology >Characterization of the cellulolytic complex (cellulosome) produced by Clostridium cellulolyticum.
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Characterization of the cellulolytic complex (cellulosome) produced by Clostridium cellulolyticum.

机译:溶纤梭菌产生的纤维素分解复合物(纤维素体)的表征。

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The cellulolytic complex was isolated from Clostridium cellulolyticum grown on cellulose. Upon gel filtration, the complex was found to consist mainly of 600-kDa units, along with a 16-MDa aggregate. Its ability to degrade various substrates and its capacity to bind to the crystalline cellulose were measured. The results of sodium dodecyl sulfate-polyacrylamide gel electrophoresis, N-terminal sequencing, and blotting analysis showed that all of the known cellulases of this organism are present in this complex. Three major components were observed: the first component, a noncatalytic, large (160-kDa) protein, was identified based on its ability to bind to the dockerin-containing cellulases as scaffolding protein CipC. The other two components, which had molecular masses of 94 and 80.6 kDa, were identified as CelE and CelF, respectively. The identified cellulases and some other components of the cellulosome were able to bind to a miniCipC1 construct. In addition to providing an extensive description of the system, the results of the present study confirm that the dockerin-cohesin domain interaction plays an essential role in the constitution of the cellulosome.
机译:从生长在纤维素上的解纤梭菌分离纤维素分解复合物。凝胶过滤后,发现该复合物主要由600 kDa单位以及16-MDa聚集体组成。测量了其降解各种底物的能力及其与结晶纤维素结合的能力。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,N端测序和印迹分析的结果表明,该复合物中存在该生物体的所有已知纤维素酶。观察到三个主要成分:第一个成分是一种非催化的大(160 kDa)蛋白,是基于其与包含dockerin的纤维素酶作为支架蛋白CipC结合的能力而鉴定的。分子量分别为94和80.6 kDa的其他两个组分分别鉴定为CelE和CelF。鉴定出的纤维素酶和纤维素酶体的一些其他成分能够结合至miniCipC1构建体。除了提供对该系统的广泛描述之外,本研究的结果证实,dockerin-cohesin域相互作用在纤维素小体的构成中起着至关重要的作用。

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