Department of Biological Chemistry, The Weizmann Institute of Science, Rehovot 76100, Israel.
Proteins. 2009 Nov 15;77(3):699-709. doi: 10.1002/prot.22483.
The cellulosome is an intriguing multienzyme complex found in cellulolytic bacteria that plays a key role in the degradation of plant cell-wall polysaccharides. In Ruminococcus flavefaciens, a predominant fiber-degrading bacterium found in ruminants, the cellulosome is anchored to the bacterial cell wall through a relatively short ScaE scaffoldin. Determination of the crystal structure of the lone type-III ScaE cohesin from R. flavefaciens (Rf-CohE) was initiated as a part of a structural effort to define cellulosome assembly. The structure was determined at 1.95 A resolution by single-wavelength anomalous diffraction. This is the first detailed description of a crystal structure for a type-III cohesin, and its features were compared with those of the known type-I and type-II cohesin structures. The Rf-CohE module folds into a nine-stranded beta-sandwich with jellyroll topology, typically observed for cohesins, and includes two beta-flaps in the midst of beta-strands 4 and 8, similar to the type-II cohesin structures. However, the presence in Rf-CohE of an additional 13-residue alpha-helix located between beta-strands 8 and 9 represents a dramatic divergence from other known cohesin structures. The prominent alpha-helix is enveloped by an extensive N-terminal loop, not observed in any other known cohesin, which embraces the helix presumably enhancing its stability. A planar surface at the upper portion of the front face of the molecule, bordered by beta-flap 8, exhibits plausible dimensions and exposed amino acid residues to accommodate the dockerin-binding site.
纤连蛋白体是一种存在于纤维素分解菌中的有趣的多酶复合物,在植物细胞壁多糖的降解中起着关键作用。在反刍动物中占优势的纤维分解菌 Ruminococcus flavefaciens 中,纤连蛋白体通过相对较短的 ScaE 支架锚定在细菌细胞壁上。作为确定纤连蛋白体组装结构的努力的一部分,首先确定了来自 R. flavefaciens(Rf-CohE)的唯一的 III 型 ScaE 粘着蛋白的晶体结构。该结构通过单波长异常衍射在 1.95 A 分辨率下确定。这是首次详细描述 III 型粘着蛋白的晶体结构,并且比较了其特征与已知的 I 型和 II 型粘着蛋白结构。Rf-CohE 模块折叠成具有 jellyroll 拓扑结构的九链β-夹心,通常观察到粘着蛋白,并且在β-链 4 和 8 之间包含两个β-瓣,类似于 II 型粘着蛋白结构。然而,在 Rf-CohE 中存在的位于β-链 8 和 9 之间的另外 13 个残基的α-螺旋代表与其他已知的粘着蛋白结构的显著差异。突出的α-螺旋被一个广泛的 N 端环包围,在任何其他已知的粘着蛋白中都没有观察到,该环包围着螺旋,可能增强了其稳定性。分子前表面上部的一个平面表面,由β-瓣 8 边界,具有合理的尺寸和暴露的氨基酸残基,以容纳 dockerin 结合位点。