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首页> 外文期刊>Journal of Molecular Biology >Modular arrangement of a cellulosomal scaffoldin subunit revealed from the crystal structure of a cohesin dyad.
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Modular arrangement of a cellulosomal scaffoldin subunit revealed from the crystal structure of a cohesin dyad.

机译:从cohesin dyad的晶体结构揭示了纤维素支架蛋白亚基的模块排列。

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The cellulosome complex is composed of a conglomerate of subunits, each of which comprises a set of interacting functional modules. Scaffoldin (Sca), a major cellulosomal subunit, is responsible for organizing the cellulolytic subunits into the complex. This is accomplished by the interaction of two complementary classes of modules-a cohesin (Coh) module on the Sca subunit and a dockerin module on each of the enzymatic subunits. Although individual Coh modules from different cellulosomal scaffoldins have been subjected to intensive structural investigation, the Sca subunit in its entirety has not, and there remains a paucity of information on the arrangement and interactions of Cohs within the Sca subunit. In the present work, we describe the crystal structure of a type II Coh dyad from the ScaB "adaptor" Sca of Acetivibrio cellulolyticus. The ScaB Cohs are oriented in an "antiparallel" manner relative to one another, with their dockerin-interacting surfaces (beta-strands 8-3-6-5) facing the same direction-aligned on the same plane. A set of extensive hydrophobic and hydrogen-bond contacts between the Cohs and the short interconnecting linker segment between them stabilizes the modular orientation. This Coh dyad structure provides novel information about Coh-Coh association and arrangement in the Sca and further insight into intermodular linker interactions. Putative structural arrangements of a hexamodular complex, composed of the Coh dyad bound to two X-dockerin modules, were suggested.
机译:纤维素复合体由亚基的聚集体组成,每个亚基包含一组相互作用的功能模块。支架蛋白(Sca)是主要的纤维素亚基,负责将纤维素分解亚基组织成复合物。这是通过两个互补类的模块的相互作用来完成的:Sca亚基上的黏附素(Coh)模块和每个酶亚基上的dockerin模块。尽管已经对来自不同纤维素支架蛋白的各个Coh模块进行了深入的结构研究,但整个Sca亚基尚未进行完整的研究,并且关于Sca亚基中Coh的排列和相互作用的信息仍然很少。在目前的工作中,我们描述了来自纤溶假单胞菌的ScaB“适配器” Sca的II型Coh dyad的晶体结构。 ScaB Cohs以彼此“反平行”的方式定向,它们与dockerin相互作用的表面(β链8-3-6-5)面向相同方向,并在同一平面上对齐。 Cohs和它们之间的短互连链节之间的一组广泛的疏水和氢键接触稳定了模块的取向。这种Coh二聚体结构提供了有关Sca中Coh-Coh缔合和排列的新颖信息,并进一步了解了模间接头之间的相互作用。有人提出了由Coh dyad绑定到两个X-dockerin模块组成的六模块复合物的推定结构安排。

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