首页> 外文期刊>Journal of Molecular Biology >Intermodular linker flexibility revealed from crystal structures of adjacent cellulosomal cohesins of Acetivibrio cellulolyticus.
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Intermodular linker flexibility revealed from crystal structures of adjacent cellulosomal cohesins of Acetivibrio cellulolyticus.

机译:纤维素分解纤溶酶的相邻纤维素粘着蛋白的晶体结构揭示了模块间接头的柔性。

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Cellulosome complexes comprise an intercalated set of multimodular dockerin-containing enzymatic subunits connected to cohesin-containing nonenzymatic subunits called scaffoldins. The adjoining modules in each cellulosomal subunit are interconnected by a variety of linker segments of different lengths and composition. The exact role of the cellulosomal linkers has yet to be described, although it is assumed that they contribute to the architecture and action of the cellulosome by providing the protein subunits with flexibility and by providing spacers between the enzymatic modules that could enhance interactions with the cellulose substrate. Here we present four crystal structures of Acetivibrio cellulolyticus cellulosomal type II cohesins with linker extensions. Two of the structures represent two different crystal forms (trigonal and orthorhombic) of the same N-terminal cohesin module (CohB1) together with its full (6-residue) native C-terminal linker, derived from scaffoldin B. The other two structures belong to the adjacent (second) cohesin module (CohB2), each of which was crystallized with the same 6-residue linker segment, but now positioned at the N-terminus and with either a truncated (5-residue) or a full-length (45-residue) C-terminal linker, respectively. Comparison between the two CohB1 structures revealed significant differences in the conformation of their equivalent C-terminal linker segment. In one crystal form a helical conformation was observed, as opposed to an extended conformation in the other. The CohB2 structures also displayed diverse conformations in their linker segments. In these structures, different linker conformations were observed in the individual molecules within the asymmetric unit of each structure. This conformational diversity implies that the linkers may adopt alternative conformations in their natural environment, consistent with varying environmental conditions. The findings suggest that linkers can play an important role in the assembly, dynamics and function of the cellulosomal components.
机译:纤维素复合物包含一组插入的多模块含dockerin的酶亚基,这些亚基与包含cohesin的非酶亚基scaffoldin连接。每个纤维素亚单位中的相邻模块通过不同长度和组成的各种接头节段相互连接。纤维素连接体的确切作用尚未描述,尽管假定它们通过为蛋白质亚基提供柔韧性并通过在酶模块之间提供可增强与纤维素相互作用的间隔基来促进纤维素体的结构和作用。基质。在这里,我们介绍了带有连接子延伸的纤溶纤溶蛋白II型粘着蛋白的四个晶体结构。其中两个结构代表相同N端黏附素模块(CohB1)的两种不同晶体形式(三角形和正交),以及其完整的(6-残基)天然C端接头,衍生自支架蛋白B。其他两个结构属于到相邻的(第二)粘着素模块(CohB2),每个模块都用相同的6个残基的连接子片段结晶,但现在位于N末端,具有截短的(5个残基)或全长45个残基)的C端接头。两种CohB1结构之间的比较显示,它们等效的C末端接头片段的构象存在显着差异。在一种晶形中观察到螺旋构象,而在另一种晶形中则观察到螺旋构象。 CohB2结构在其接头片段中也显示出不同的构象。在这些结构中,在每个结构的不对称单元内的单个分子中观察到不同的接头构象。这种构象多样性意味着接头可以在其自然环境中采用与各种环境条件一致的替代构象。这些发现表明,接头可以在纤维素组分的组装,动力学和功能中发挥重要作用。

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