Department of Biotechnology and Enzyme Catalysis, Institute of Biochemistry, Greifswald University, Felix-Hausdorff-Str. 4, 17487 Greifswald, Germany.
Appl Microbiol Biotechnol. 2011 Aug;91(4):1049-60. doi: 10.1007/s00253-011-3328-x. Epub 2011 May 21.
A haloalkane dehalogenase (DppA) from Plesiocystis pacifica SIR-1 was identified by sequence comparison in the NCBI database, cloned, functionally expressed in Escherichia coli, purified, and biochemically characterized. The three-dimensional (3D) structure was determined by X-ray crystallography and has been refined at 1.95 Å resolution to an R-factor of 21.93%. The enzyme is composed of an α/β-hydrolase fold and a cap domain and the overall fold is similar to other known haloalkane dehalogenases. Active site residues were identified as Asp123, His278, and Asp249 and Trp124 and Trp163 as halide-stabilizing residues. DppA, like DhlA from Xanthobacter autotrophicus GJ10, is a member of the haloalkane dehalogenase subfamily HLD-I. As a consequence, these enzymes have in common the relative position of their catalytic residues within the structure and also show some similarities in the substrate specificity. The enzyme shows high preference for 1-bromobutane and does not accept chlorinated alkanes, halo acids, or halo alcohols. It is a monomeric protein with a molecular mass of 32.6 kDa and exhibits maximum activity between 33 and 37°C with a pH optimum between pH 8 and 9. The K(m) and k(cat) values for 1-bromobutane were 24.0 mM and 8.08 s(-1). Furthermore, from the 3D-structure of DppA, it was found that the enzyme possesses a large and open active site pocket. Docking experiments were performed to explain the experimentally determined substrate preferences.
太平洋磷虾来源的 haloalkane dehalogenase (DppA) 通过在 NCBI 数据库中的序列比较被鉴定,通过克隆、在大肠杆菌中功能表达、纯化和生化特性进行研究。通过 X 射线晶体学确定了三维 (3D) 结构,并将分辨率提高到 1.95 Å,达到了 21.93%的 R 因子。该酶由 α/β-水解酶折叠和帽结构域组成,整体折叠与其他已知的 haloalkane dehalogenases 相似。活性位点残基鉴定为 Asp123、His278 和 Asp249,以及 Trp124 和 Trp163 作为卤化物稳定残基。DppA 与黄单胞菌属 GJ10 的 DhlA 一样,属于 haloalkane dehalogenase 亚家族 HLD-I 的成员。因此,这些酶在结构中具有催化残基的相对位置,并且在底物特异性方面也表现出一些相似性。该酶对 1-溴丁烷具有高选择性,不接受氯化烷烃、卤代酸或卤代醇。它是一种具有 32.6 kDa 分子量的单体蛋白,在 33 至 37°C 之间具有最大活性,pH 最佳范围在 8 至 9 之间。1-溴丁烷的 K(m)和 k(cat) 值分别为 24.0 mM 和 8.08 s(-1)。此外,从 DppA 的 3D 结构中发现,该酶具有一个大而开放的活性位点口袋。进行了对接实验以解释实验确定的底物偏好。