Aachmann Finn L, Svanem Britt I G, Güntert Peter, Petersen Steffen B, Valla Svein, Wimmer Reinhard
Department of Life Sciences, Aalborg University, Sohngaardsholmsvej 49, DK-9000 Aalborg, Denmark.
J Biol Chem. 2006 Mar 17;281(11):7350-6. doi: 10.1074/jbc.M510069200. Epub 2006 Jan 3.
In the bacterium Azotobacter vinelandii, a family of seven secreted and calcium-dependent mannuronan C-5 epimerases (AlgE1-7) has been identified. These epimerases are responsible for the epimerization of beta-d-mannuronic acid to alpha-l-guluronic acid in alginate polymers. The epimerases consist of two types of structural modules, designated A (one or two copies) and R (one to seven copies). The structure of the catalytically active A-module from the smallest epimerase AlgE4 (consisting of AR) has been solved recently. This paper describes the NMR structure of the R-module from AlgE4 and its titration with a substrate analogue and paramagnetic thulium ions. The R-module folds into a right-handed parallel beta-roll. The overall shape of the R-module is an elongated molecule with a positively charged patch that interacts with the substrate. Titration of the R-module with thulium indicated possible calcium binding sites in the loops formed by the nonarepeat sequences in the N-terminal part of the molecule and the importance of calcium binding for the stability of the R-module. Structure calculations showed that calcium ions can be incorporated in these loops without structural violations and changes. Based on the structure and the electrostatic surface potential of both the A- and R-module from AlgE4, a model for the appearance of the whole protein is proposed.
在棕色固氮菌中,已鉴定出一个由七种分泌型且依赖钙的甘露糖醛酸C-5差向异构酶(AlgE1-7)组成的家族。这些差向异构酶负责藻酸盐聚合物中β-D-甘露糖醛酸向α-L-古洛糖醛酸的差向异构化。这些差向异构酶由两种类型的结构模块组成,分别称为A(一或两个拷贝)和R(一至七个拷贝)。最小的差向异构酶AlgE4(由AR组成)的催化活性A模块的结构最近已得到解析。本文描述了AlgE4的R模块的核磁共振结构及其与底物类似物和顺磁性铥离子的滴定情况。R模块折叠成一个右手平行β-螺旋。R模块的整体形状是一个细长分子,带有一个与底物相互作用的带正电荷区域。用铥对R模块进行滴定表明,在分子N端由非重复序列形成的环中可能存在钙结合位点,且钙结合对R模块的稳定性很重要。结构计算表明,钙离子可以纳入这些环中而不会违反结构规则或导致结构变化。基于AlgE4的A模块和R模块的结构以及静电表面电位,提出了整个蛋白质外观的模型。