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解纤维梭菌黏连蛋白模块的晶体结构:对dockerin识别的启示

Crystal structure of a cohesin module from Clostridium cellulolyticum: implications for dockerin recognition.

作者信息

Spinelli S, Fiérobe H P, Belaïch A, Belaïch J P, Henrissat B, Cambillau C

机构信息

Architecture et Fonction des Macromolécules Biologiques, UMR 6098, CNRS-Universités de Marseille I et II, 31 Chemin Joseph-Aiguier, Marseille, Cedex 20, 13402, France.

出版信息

J Mol Biol. 2000 Nov 24;304(2):189-200. doi: 10.1006/jmbi.2000.4191.

Abstract

In the assembly of the Clostridium cellulolyticum cellulosome, the multiple cohesin modules of the scaffolding protein CipC serve as receptors for cellulolytic enzymes which bear a dockerin module. The X-ray structure of a type I C. cellulolyticum cohesin module (Cc-cohesin) has been solved using molecular replacement, and refined at 2.0 A resolution. Despite a rather low sequence identity of 32 %, this module has a fold close to those of the two Clostridium thermocellum cohesin (Ct-cohesin) modules whose 3D structures have been determined previously. Cc-cohesin forms a dimer in the crystal, as do the two Ct-cohesins. We show here that the dimer exists in solution and that addition of dockerin-containing proteins dissociates the dimer. This suggests that the dimerization interface and the cohesin/dockerin interface may overlap. The nature of the overall surface and of the dimer interface of Cc-cohesin differ notably from those of the Ct-cohesin modules, being much less polar, and this may explain the species specificity observed in the cohesin/dockerin interaction of C. cellulolyticum and C. thermocellum. We have produced a topology model of a C. cellulolyticum dockerin and of a Cc-cohesin/dockerin complex using homology modeling and available biochemical data. Our model suggests that a special residue pair, already identified in dockerin sequences, is located at the center of the cohesin surface putatively interacting with the dockerin.

摘要

在解纤维梭菌纤维小体的组装过程中,支架蛋白CipC的多个黏连蛋白模块作为具有dockerin模块的纤维素分解酶的受体。利用分子置换法解析了I型解纤维梭菌黏连蛋白模块(Cc-黏连蛋白)的X射线结构,并在2.0 Å分辨率下进行了精修。尽管序列同一性相当低,仅为32%,但该模块的折叠结构与先前已确定三维结构的两种嗜热栖热梭菌黏连蛋白(Ct-黏连蛋白)模块的折叠结构相近。Cc-黏连蛋白在晶体中形成二聚体,两种Ct-黏连蛋白也是如此。我们在此表明二聚体存在于溶液中,并且添加含dockerin的蛋白会使二聚体解离。这表明二聚化界面和黏连蛋白/dockerin界面可能重叠。Cc-黏连蛋白的整体表面性质和二聚体界面与Ct-黏连蛋白模块的明显不同,极性小得多,这可能解释了解纤维梭菌和嗜热栖热梭菌在黏连蛋白/dockerin相互作用中观察到的物种特异性。我们利用同源建模和现有的生化数据构建了解纤维梭菌dockerin以及Cc-黏连蛋白/dockerin复合物的拓扑模型。我们的模型表明,在dockerin序列中已鉴定出的一对特殊残基位于黏连蛋白表面假定与dockerin相互作用的中心位置。

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