首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Purification crystallization and preliminary X-ray characterization of the third ScaB cohesin in complex with an ScaA X-dockerin from Acetivibrio cellulolyticus
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Purification crystallization and preliminary X-ray characterization of the third ScaB cohesin in complex with an ScaA X-dockerin from Acetivibrio cellulolyticus

机译:纯化结晶和初步的X射线表征第三ScaB黏着蛋白与Acetivibrio cellulolyticus的ScaA X-dockerin复合物

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摘要

Interactions between cohesin and dockerin modules are critical for the formation of the cellulosome, which is responsible for the efficient degradation of plant cell-wall carbohydrates by anaerobes. Type I dockerin modules found in modular enzymatic components interact with type I cohesins in primary scaffoldins, enabling the assembly of the multi-enzyme complex. In contrast, type II dockerins located in primary scaffoldins bind to type II cohesins in adaptor scaffoldins or anchoring scaffoldins located at the bacterial envelope, contributing to the cell-surface attachment of the entire complex. Acetivibrio cellulolyticus possesses an extremely complex cellulosome arrangement which is organized by a primary enzyme-binding scaffoldin (ScaA), two anchoring scaffoldins (ScaC and ScaD) and an unusual adaptor scaffoldin (ScaB). An ScaA X-dockerin mutated to inactivate one of the two putative cohesin-binding interfaces complexed with the third ScaB cohesin from A. cellulolyticus has been purified and crystallized and data were collected to a resolution of 2.41 Å.
机译:粘着蛋白和码头蛋白模块之间的相互作用对于纤维素体的形成至关重要,纤维素体负责厌氧菌有效降解植物细胞壁碳水化合物。在模块化酶促成分中发现的I型dockerin模块与一级支架蛋白中的I型粘着蛋白相互作用,从而实现了多酶复合物的组装。相反,位于主要支架蛋白中的II型码头蛋白与位于细菌包膜上的衔接子支架蛋白或锚定支架蛋白中的II型粘着蛋白结合,从而有助于整个复合物的细胞表面附着。消旋醋杆菌具有极其复杂的纤维素体排列,其由初级酶结合支架(ScaA),两个锚定支架(ScaC和ScaD)和不寻常的衔接子支架(ScaB)组成。一个ScaA X-dockerin突变以灭活与来自溶纤曲霉的第三个ScaB黏附素复合的两个推定黏附素结合界面之一,已被纯化和结晶,收集的数据分辨率为2.41Å。

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