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Higher order scaffoldin assembly in Ruminococcus flavefaciens cellulosome is coordinated by a discrete cohesin-dockerin interaction

机译:黄褐球菌纤维素体中高阶支架蛋白的组装由离散的cohesin-dockerin相互作用协调

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Cellulosomes are highly sophisticated molecular nanomachines that participate in the deconstruction of complex polysaccharides, notably cellulose and hemicellulose. Cellulosomal assembly is orchestrated by the interaction of enzyme-borne dockerin (Doc) modules to tandem cohesin (Coh) modules of a non-catalytic primary scaffoldin. In some cases, as exemplified by the cellulosome of the major cellulolytic ruminal bacterium Ruminococcus flavefaciens, primary scaffoldins bind to adaptor scaffoldins that further interact with the cell surface via anchoring scaffoldins, thereby increasing cellulosome complexity. Here we elucidate the structure of the unique Doc of R. flavefaciens FD-1 primary scaffoldin ScaA, bound to Coh 5 of the adaptor scaffoldin ScaB. The RfCohScaB5-DocScaA complex has an elliptical architecture similar to previously described complexes from a variety of ecological niches. ScaA Doc presents a single-binding mode, analogous to that described for the other two Coh-Doc specificities required for cellulosome assembly in R. flavefaciens. The exclusive reliance on a single-mode of Coh recognition contrasts with the majority of cellulosomes from other bacterial species described to date, where Docs contain two similar Coh-binding interfaces promoting a dual-binding mode. The discrete Coh-Doc interactions observed in ruminal cellulosomes suggest an adaptation to the exquisite properties of the rumen environment.
机译:纤维素是高度复杂的分子纳米机器,参与复杂多糖(尤其是纤维素和半纤维素)的解构。酶体泊坞蛋白(Doc)模块与非催化性主支架蛋白的串联黏附素(Coh)模块之间的相互作用可以协调纤维素的组装。在一些情况下,如主要的纤维素分解瘤胃细菌黄褐球菌的纤维素体所例示,初级支架素与衔接子支架素结合,后者通过锚定支架素进一步与细胞表面相互作用,从而增加了纤维素体的复杂性。在这里,我们阐明了R. flavefaciens FD-1主支架蛋白ScaA的独特Doc的结构,该Doc与衔接支架蛋白ScaB的Coh 5结合。 RfCohScaB5-DocScaA复合物具有类似于先前描述的来自各种生态位的复合物的椭圆结构。 ScaA Doc提出了一种单结合模式,类似于针对黄褐藻中纤维素体组装所需的其他两种Coh-Doc特异性所描述的模式。唯一依赖于Coh识别的单一模式与迄今为止描述的来自其他细菌物种的大多数纤维素体形成对比,其中Docs包含两个促进双重结合模式的相似的Coh结合界面。在瘤胃纤维质体中观察到的离散的Coh-Doc相互作用表明对瘤胃环境的优良特性的适应。

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