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首页> 外文期刊>FEBS Open Bio >Intramolecular clasp of the cellulosomal Ruminococcus flavefaciens ScaA dockerin module confers structural stability
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Intramolecular clasp of the cellulosomal Ruminococcus flavefaciens ScaA dockerin module confers structural stability

机译:纤维素类黄褐球菌ScaA dockerin模块的分子内扣环赋予结构稳定性

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The cellulosome is a large extracellular multi-enzyme complex that facilitates the efficient hydrolysis and degradation of crystalline cellulosic substrates. During the course of our studies on the cellulosome of the rumen bacterium Ruminococcus flavefaciens, we focused on the critical ScaA dockerin (ScaADoc), the unique dockerin that incorporates the primary enzyme-integrating ScaA scaffoldin into the cohesin-bearing ScaB adaptor scaffoldin. In the absence of a high-resolution structure of the ScaADoc module, we generated a computational model, and, upon its analysis, we were surprised to discover a putative stacking interaction between an N-terminal Trp and a C-terminal Pro, which we termed intramolecular clasp. In order to verify the existence of such an interaction, these residues were mutated to alanine. Circular dichroism spectroscopy, intrinsic tryptophan and ANS fluorescence, and NMR spectroscopy indicated that mutation of these residues has a destabilizing effect on the functional integrity of the Ca^2^+-bound form of ScaADoc. Analysis of recently determined dockerin structures from other species revealed the presence of other well-defined intramolecular clasps, which consist of different types of interactions between selected residues at the dockerin termini. We propose that this thematic interaction may represent a major distinctive structural feature of the dockerin module.
机译:纤维素小体是一种大型的细胞外多酶复合物,可促进晶体纤维素底物的有效水解和降解。在我们对瘤胃细菌鲁米诺球菌的纤维素体的研究过程中,我们重点研究了关键的ScaA dockerin(ScaADoc),这是一种独特的dockerin,其将整合有主要酶的ScaA scaffoldin整合到带有粘着素的ScaB衔接子scaffoldin中。在没有高分辨率结构的ScaADoc模块的情况下,我们生成了一个计算模型,并且在对其进行分析后,我们惊讶地发现了N端Trp和C端Pro之间的推定堆叠相互作用,称为分子内扣。为了验证这种相互作用的存在,将这些残基突变为丙氨酸。圆二色光谱,固有色氨酸和ANS荧光以及NMR光谱表明,这些残基的突变对ScaADoc的Ca 2+结合形式的功能完整性具有去稳定作用。对来自其他物种的最近确定的dockerin结构的分析显示,存在其他定义明确的分子内钩环,该钩环由dockerin末端选定残基之间的不同类型的相互作用组成。我们建议这种主题互动可能代表dockerin模块的主要独特结构特征。

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