Carvalho Ana L, Pires Virginia M R, Gloster Tracey M, Turkenburg Johan P, Prates José A M, Ferreira Luís M A, Romão Maria J, Davies Gideon J, Fontes Carlos M G A, Gilbert Harry J
REQUIMTE/CQFB, Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.
J Mol Biol. 2005 Jun 24;349(5):909-15. doi: 10.1016/j.jmb.2005.04.037.
The plant cell wall degrading enzymes expressed by anaerobic microorganisms form large multienzyme complexes (cellulosomes). Cellulosomes assemble by the Type I dockerins on the catalytic subunits binding to the reiterated Type I cohesins in the molecular scaffold, while Type II dockerin-cohesin interactions anchor the complex onto the bacterial cell surface. Type I and Type II cohesin, dockerin pairs show no cross-specificity. Here we report the crystal structure of the Type II cohesin (CohII) from the Clostridium thermocellum cell surface anchoring protein SdbA. The protein domain contains nine beta-strands and a small alpha-helix. The beta-strands assemble into two elongated beta-sheets that display a typical jelly roll fold. The structure of CohII is very similar to Type I cohesins, and the dockerin binding site, which is centred at beta-strands 3, 5 and 6, is likely to be conserved in the two proteins. Subtle differences in the topology of the binding sites and a lack of sequence identity in the beta-strands that comprise the core of the dockerin binding site explain why Type I and Type II cohesins display such distinct specificities for their target dockerins.
厌氧微生物表达的植物细胞壁降解酶形成大型多酶复合物(纤维小体)。纤维小体通过催化亚基上的I型dockerin与分子支架中重复的I型黏连蛋白结合而组装,而II型dockerin-黏连蛋白相互作用则将复合物锚定在细菌细胞表面。I型和II型黏连蛋白、dockerin对之间没有交叉特异性。在此,我们报道了来自嗜热栖热放线菌细胞表面锚定蛋白SdbA的II型黏连蛋白(CohII)的晶体结构。该蛋白质结构域包含九条β链和一个小的α螺旋。β链组装成两个细长的β折叠片,呈现出典型的果冻卷折叠。CohII的结构与I型黏连蛋白非常相似,以β链3、5和6为中心的dockerin结合位点在这两种蛋白质中可能是保守的。结合位点拓扑结构的细微差异以及构成dockerin结合位点核心的β链中缺乏序列同一性,解释了为什么I型和II型黏连蛋白对其靶标dockerin表现出如此明显的特异性。