3UVA
Crystal structure of L-rhamnose isomerase mutant W38F from Bacillus halodurans in complex with Mn
3UVA の概要
エントリーDOI | 10.2210/pdb3uva/pdb |
関連するPDBエントリー | 3P14 3UU0 |
分子名称 | L-Rhamnose isomerase, MANGANESE (II) ION (3 entities in total) |
機能のキーワード | (beta/alpha)8 barrel, isomerase |
由来する生物種 | Bacillus halodurans |
細胞内の位置 | Cytoplasm (By similarity): Q9KCL9 |
タンパク質・核酸の鎖数 | 4 |
化学式量合計 | 196586.18 |
構造登録者 | Doan, T.T.N.,Prabhu, P.,Jeya, M.,Kim, J.K.,Kang, L.W.,Lee, J.K. (登録日: 2011-11-29, 公開日: 2012-12-05, 最終更新日: 2024-03-20) |
主引用文献 | Prabhu, P.,Doan, T.N.,Tiwari, M.,Singh, R.,Kim, S.C.,Hong, M.K.,Kang, Y.C.,Kang, L.W.,Lee, J.K. Structure-based studies on the metal binding of two-metal-dependent sugar isomerases. Febs J., 281:3446-3459, 2014 Cited by PubMed Abstract: Two-metal-dependent sugar isomerases are important in the synthesis of rare sugars. Many of their properties, specifically their metal dependency, have not been sufficiently explored. Here we used X-ray crystallography, site-directed mutagenesis, isothermal titration calorimetry and electron paramagnetic resonance spectroscopy to investigate the molecular determinants of the metal-binding affinity of l-rhamnose isomerase, a two-Mn(2+) -dependent isomerase from Bacillus halodurans (BHRI). The crystal structure of BHRI confirmed the presence of two metal ion-binding sites: a structural metal ion-binding site for substrate binding, and a catalytic metal ion-binding site that catalyzes a hydride shift. One conserved amino acid, W38, in wild-type BHRI was identified as a critical residue for structural Mn(2+) binding and thus the catalytic efficiency of BHRI. This function of W38 was explored by replacing it with other amino acids. Substitution by Phe, His, Lys, Ile or Ala caused complete loss of catalytic activity. The role of W38 was further examined by analyzing the crystal structure of wild-type BHRI and two inactive mutants of BHRI (W38F and W38A) in complex with Mn(2+) . A structural comparison of the mutants and the wild-type revealed differences in their coordination of Mn(2+) , including changes in metal-ligand bond length and affinity for Mn(2+) . The role of W38 was further confirmed in another two-metal-dependent enzyme: xylose isomerase from Bacillus licheniformis. These data suggest that W38 stabilizes protein-metal complexes and in turn assists ligand binding during catalysis in two-metal-dependent isomerases. PubMed: 24925069DOI: 10.1111/febs.12872 主引用文献が同じPDBエントリー |
実験手法 | X-RAY DIFFRACTION (2.69 Å) |
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