Petkun Svetlana, Rozman Grinberg Inna, Lamed Raphael, Jindou Sadanari, Burstein Tal, Yaniv Oren, Shoham Yuval, Shimon Linda J W, Bayer Edward A, Frolow Felix
Department of Molecular Microbiology and Biotechnology, The Daniella Rich Institute for Structural Biology, Tel Aviv University , Ramat Aviv , Israel.
Department of Life Sciences, Meijo University , Nagoya , Japan.
PeerJ. 2015 Sep 15;3:e1126. doi: 10.7717/peerj.1126. eCollection 2015.
Non-cellulosomal processive endoglucanase 9I (Cel9I) from Clostridium thermocellum is a modular protein, consisting of a family-9 glycoside hydrolase (GH9) catalytic module and two family-3 carbohydrate-binding modules (CBM3c and CBM3b), separated by linker regions. GH9 does not show cellulase activity when expressed without CBM3c and CBM3b and the presence of the CBM3c was previously shown to be essential for endoglucanase activity. Physical reassociation of independently expressed GH9 and CBM3c modules (containing linker sequences) restored 60-70% of the intact Cel9I endocellulase activity. However, the mechanism responsible for recovery of activity remained unclear. In this work we independently expressed recombinant GH9 and CBM3c with and without their interconnecting linker in Escherichia coli. We crystallized and determined the molecular structure of the GH9/linker-CBM3c heterodimer at a resolution of 1.68 Å to understand the functional and structural importance of the mutual spatial orientation of the modules and the role of the interconnecting linker during their re-association. Enzyme activity assays and isothermal titration calorimetry were performed to study and compare the effect of the linker on the re-association. The results indicated that reassembly of the modules could also occur without the linker, albeit with only very low recovery of endoglucanase activity. We propose that the linker regions in the GH9/CBM3c endoglucanases are important for spatial organization and fixation of the modules into functional enzymes.
来自嗜热栖热放线菌的非纤维小体进行性内切葡聚糖酶9I(Cel9I)是一种模块化蛋白质,由一个9家族糖苷水解酶(GH9)催化模块和两个3家族碳水化合物结合模块(CBM3c和CBM3b)组成,由连接区隔开。当没有CBM3c和CBM3b时,GH9不显示纤维素酶活性,并且先前已证明CBM3c的存在对内切葡聚糖酶活性至关重要。独立表达的GH9和CBM3c模块(包含连接序列)的物理重聚恢复了完整Cel9I内切纤维素酶活性的60-70%。然而,负责活性恢复的机制仍不清楚。在这项工作中,我们在大肠杆菌中独立表达了带有和不带有连接体的重组GH9和CBM3c。我们以1.68 Å的分辨率结晶并确定了GH9/连接体-CBM3c异二聚体的分子结构,以了解模块相互空间取向功能和结构的重要性以及连接体在它们重新结合过程中的作用。进行了酶活性测定和等温滴定量热法,以研究和比较连接体对重新结合的影响。结果表明,没有连接体时模块也可以重新组装,尽管内切葡聚糖酶活性的恢复非常低。我们提出,GH9/CBM3c内切葡聚糖酶中的连接区对于将模块空间组织和固定成功能酶很重要。