Pagès S, Bélaïch A, Bélaïch J P, Morag E, Lamed R, Shoham Y, Bayer E A
Centre National de la Recherche Scientifique, IBSM-IFR1, Marseille, France.
Proteins. 1997 Dec;29(4):517-27.
The cross-species specificity of the cohesin-dockerin interaction, which defines the incorporation of the enzymatic subunits into the cellulosome complex, has been investigated. Cohesin-containing segments from the cellulosomes of two different species, Clostridium thermocellum and Clostridium cellulolyticum, were allowed to interact with cellulosomal (dockerin-containing) enzymes from each species. In both cases, the cohesin domain of one bacterium interacted with enzymes from its own cellulosome in a calcium-dependent manner, but the same cohesin failed to recognize enzymes from the other species. Thus, in the case of these two bacteria, the cohesin-dockerin interaction seems to be species-specific. Based on intra- and cross-species sequence comparisons among the different dockerins together with their known specificities, we tender a prediction as to the amino-acid residues critical to recognition of the cohesins. The suspected residues were narrowed down to only four, which comprise a repeated pair located within the calcium-binding motif of two duplicated sequences, characteristic of the dockerin domain. According to the proposed model, these four residues do not participate in the binding of calcium per se; instead, they appear to serve as recognition codes in promoting interaction with the cohesin surface.
对粘着蛋白-锚定蛋白相互作用的种间特异性进行了研究,这种相互作用决定了酶亚基纳入纤维小体复合物的过程。来自两种不同物种(嗜热栖热放线菌和溶纤梭菌)的纤维小体中含粘着蛋白的片段与来自每个物种的纤维小体(含锚定蛋白)酶相互作用。在这两种情况下,一种细菌的粘着蛋白结构域以钙依赖的方式与其自身纤维小体中的酶相互作用,但相同的粘着蛋白无法识别来自另一个物种的酶。因此,对于这两种细菌而言,粘着蛋白-锚定蛋白相互作用似乎具有物种特异性。基于不同锚定蛋白之间的种内和种间序列比较及其已知的特异性,我们对识别粘着蛋白至关重要的氨基酸残基进行了预测。可疑残基被缩小到仅四个,它们构成了位于两个重复序列的钙结合基序内的一对重复序列,这是锚定蛋白结构域的特征。根据提出的模型,这四个残基本身不参与钙的结合;相反,它们似乎作为识别代码促进与粘着蛋白表面的相互作用。