Department of Biotechnology, Panjab University, Chandigarh, India.
Int J Biol Macromol. 2011 Jun 1;48(5):779-87. doi: 10.1016/j.ijbiomac.2011.03.002. Epub 2011 Mar 10.
The intracellular enzyme dihydrodipicolinate synthase (DHDPS, E.C. 4.2.1.52) from Pseudomonas aeruginosa is a potential drug target because it is essential for the growth of bacteria while it is absent in humans. Therefore, in order to design new compounds using structure based approach for inhibiting the function of DHDPS from P. aeruginosa (Ps), we have cloned, characterized biochemically and biophysically and have determined its three-dimensional structure. The gene encoding DHDPS (dapA) was cloned in a vector pET-28c(+) and the recombinant protein was overexpressed in the Escherichia coli host. The K(m) values of the recombinant enzyme estimated for the substrates, pyruvate and (S)-aspartate-β-semialdehyde [(S)-ASA] were found to be 0.90±0.13 mM and 0.17±0.02 mM, respectively. The circular dichroism studies showed that the enzyme adopts a characteristic β/α conformation which is retained up to 65°C. The fluorescence data indicated the presence of exposed tryptophan residues in the enzyme. The three-dimensional structure determination showed that DHDPS forms a homodimer which is stabilized by several hydrogen bonds and van der Waals forces at the interface. The active site formed with residues Thr44, Tyr107 and Tyr133 is found to be stereochemically suitable for catalytic function. It may be noted that Tyr107 of the catalytic triad belongs to the partner molecule in the dimer. The structure of the complex of PsDHDPS with (S)-lysine determined at 2.65 Å resolution revealed the positions of three lysine molecules bound to the protein.
铜绿假单胞菌细胞内酶二氢二吡啶羧酸合酶 (DHDPS,E.C. 4.2.1.52) 是一个潜在的药物靶点,因为它对细菌的生长是必需的,而在人类中却不存在。因此,为了设计基于结构的新化合物来抑制铜绿假单胞菌 (Ps) 的 DHDPS 功能,我们已经对其进行了克隆、生化和生物物理特性分析,并确定了其三维结构。编码 DHDPS (dapA) 的基因被克隆到载体 pET-28c(+) 中,并在大肠杆菌宿主中过表达重组蛋白。测定了重组酶对底物丙酮酸和 (S)-天冬氨酸-β-半醛 [(S)-ASA] 的 K(m) 值,分别为 0.90±0.13 mM 和 0.17±0.02 mM。圆二色性研究表明,该酶采用特征性的 β/α 构象,在 65°C 下仍保持不变。荧光数据表明该酶中存在暴露的色氨酸残基。三维结构测定表明,DHDPS 形成同源二聚体,在界面处通过几个氢键和范德华力稳定。由残基 Thr44、Tyr107 和 Tyr133 形成的活性位点在立体化学上适合催化功能。值得注意的是,催化三联体中的 Tyr107 属于二聚体中的配对分子。在 2.65 Å 分辨率下测定的 PsDHDPS 与 (S)-赖氨酸复合物的结构揭示了三个赖氨酸分子结合到蛋白质的位置。