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1IMC

STRUCTURAL STUDIES OF METAL BINDING BY INOSITOL MONOPHOSPHATASE: EVIDENCE FOR TWO-METAL ION CATALYSIS

1IMC の概要
エントリーDOI10.2210/pdb1imc/pdb
分子名称INOSITOL MONOPHOSPHATASE, MANGANESE (II) ION, CHLORIDE ION, ... (4 entities in total)
機能のキーワードhydrolase
由来する生物種Homo sapiens (human)
細胞内の位置Cytoplasm : P29218
タンパク質・核酸の鎖数2
化学式量合計60840.10
構造登録者
Bone, R. (登録日: 1994-02-08, 公開日: 1995-02-27, 最終更新日: 2017-11-29)
主引用文献Bone, R.,Frank, L.,Springer, J.P.,Atack, J.R.
Structural studies of metal binding by inositol monophosphatase: evidence for two-metal ion catalysis.
Biochemistry, 33:9468-9476, 1994
Cited by
PubMed Abstract: The structure of inositol monophosphatase has been determined to 2.60 A resolution in complexes with Mn2+ and with Mn2+ and phosphate. In the Mn2+ complex, three metal cations and one Cl were bound in the active site on each of the two subunits of the enzyme. Ligands to the three metals include the side chains of Glu 70, Asp 90, Asp 93, and Asp 220, t he carbonyl group of Ile 92, several solvent molecules and the chloride, which is a ligand to each of the cations. When phosphate is soaked into these Mn2+ cocrystals, one of the three Mn2+ ions is expelled from the active site, leaving metal ions with octahedral and tetrahedral coordination geometry. In addition, the structure of apoinositol monophosphatase was determined to 2.5 A resolution. Residues 70-75, a two-turn helical segment which is involved in metal coordination, moves away from the metal binding site by 2-3 A in the absence of cations. Residues 30-40, which wrap around the metal binding site and interact with the metal indirectly through solvent molecules and protein ligands to the metal, become disordered in the absence of metal. In various metal complexes, segmental mobility is also observed in the residues which form the metal binding sites. The results of these studies of the interaction of inositol monophosphatase with cations suggest that the enzyme accomplishes phosphate ester hydrolysis using two metal ions, one with octahedral and one with tetrahedral coordination geometry. Broad metal-binding specificity appears to result from extensive flexibility in several of the protein segments which contribute metal ligands, from the presence of alternate metal ligands and from metal coordination spheres which include water molecules.
PubMed: 8068621
DOI: 10.1021/bi00198a012
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (2.6 Å)
構造検証レポート
Validation report summary of 1imc
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件を2024-10-30に公開中

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