Edmondson Dale E, Binda Claudia, Mattevi Andrea
Department of Biochemistry and Chemistry, Rollins Research Center, Emory University School of Medicine, 1510 Clifton Road, Atlanta, GA 30322-3050, USA.
Neurotoxicology. 2004 Jan;25(1-2):63-72. doi: 10.1016/S0161-813X(03)00114-1.
The structural details of the interactions of the covalent 8alpha-S-cysteinyl-FAD with the protein moiety in monoamine oxidase B (MAO B) based on the MAO B crystal structure are described. The dinucleotide is bound to the protein in an extended conformation with the majority of the bonds to the protein identified as hydrogen bonds with amino acid side chains, amide bonds, and water molecules. Since those amino acids interacting with the FAD are conserved in monoamine oxidase A (MAO A), it is proposed that the FAD binding site in MAO A is quite similar to that in MAO B. The redox-active isoalloxazine ring is buried in the protein without direct access to bulk solvent. An electrostatic interaction is observed between the anionic pyrophosphate moiety and Arg42. The normally flat oxidized flavin ring is in a bent, puckered conformation in the MAO B binding site which is suggested to contribute to its reactivity in catalysis. This structural information is then used to explain previous studies on flavin analog incorporation into either MAO B or into MAO A.
基于单胺氧化酶B(MAO B)的晶体结构,描述了共价8α-S-半胱氨酰-FAD与蛋白部分相互作用的结构细节。二核苷酸以伸展构象与蛋白结合,与蛋白的大多数键被确定为与氨基酸侧链、酰胺键和水分子形成的氢键。由于与FAD相互作用的那些氨基酸在单胺氧化酶A(MAO A)中是保守的,因此有人提出MAO A中的FAD结合位点与MAO B中的非常相似。氧化还原活性异咯嗪环埋在蛋白中,无法直接接触大量溶剂。观察到阴离子焦磷酸部分与Arg42之间存在静电相互作用。在MAO B结合位点,正常平坦的氧化黄素环呈弯曲、褶皱构象,这被认为有助于其催化反应活性。然后利用这些结构信息来解释先前关于黄素类似物掺入MAO B或MAO A的研究。