Département de Chimie Moléculaire, Equipes CIRe et Chimie Théorique, Université J. Fourier, UMR-CNRS 5250, ICMG FR-2607, BP 53, 38041, Grenoble, Cedex 09, France.
Chemistry. 2013 Mar 11;19(11):3655-64. doi: 10.1002/chem.201202643. Epub 2013 Jan 29.
The deciphering of the binding mode of tyrosinase (Ty) inhibitors is essential to understand how to regulate the tyrosinase activity. In this paper, by combining experimental and theoretical methods, we studied an unsymmetrical tyrosinase functional model and its interaction with 2-hydroxypyridine-N-oxide (HOPNO), a new and efficient competitive inhibitor for bacterial Ty. The tyrosinase model was a dinuclear copper complex bridged by a chelated ring with two different complexing arms (namely (bis(2-ethylpyridyl)amino)methyl and (bis(2-methylpyridyl)amino)methyl). The geometrical asymmetry of the complex induces an unsymmetrical binding of HOPNO. Comparisons have been made with the binding modes obtained on similar symmetrical complexes. Finally, by using quantum mechanics/molecular mechanics (QM/MM) calculations, we studied the binding mode in tyrosinase from a bacterial source. A new unsymmetrical binding mode was obtained, which was linked to the second coordination sphere of the enzyme.
酪氨酸酶(Ty)抑制剂结合模式的破译对于理解如何调节酪氨酸酶活性至关重要。在本文中,我们通过结合实验和理论方法,研究了一个非对称的酪氨酸酶功能模型及其与 2-羟基吡啶-N-氧化物(HOPNO)的相互作用,HOPNO 是一种新型有效的细菌 Ty 竞争性抑制剂。酪氨酸酶模型是一个双核铜配合物,由一个螯合环桥接,环上有两个不同的配位臂(即(双(2-乙基吡啶基)氨基)甲基和(双(2-甲基吡啶基)氨基)甲基)。配合物的几何不对称性导致 HOPNO 的非对称结合。我们比较了在类似的对称配合物上获得的结合模式。最后,通过使用量子力学/分子力学(QM/MM)计算,我们从细菌来源的酪氨酸酶研究了结合模式。得到了一种新的非对称结合模式,它与酶的第二个配位球有关。