Dipartimento di Chimica, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy.
Dipartimento di Chimica, Università di Milano, Via Golgi 19, 20133 Milano, Italy.
Molecules. 2023 Jun 1;28(11):4487. doi: 10.3390/molecules28114487.
A challenge in mimicking tyrosinase activity using model compounds is to reproduce its enantioselectivity. Good enantioselection requires rigidity and a chiral center close to the active site. In this study, the synthesis of a new chiral copper complex, [Cu(mXPhI)], based on an -xylyl-bis(imidazole)-bis(benzimidazole) ligand containing a stereocenter with a benzyl residue directly bound on the copper chelating ring, is reported. Binding experiments show that the cooperation between the two metal centers is weak, probably due to steric hindrance given by the benzyl group. The dicopper(II) complex [Cu(mXPhI)] has catalytic activity in the oxidations of enantiomeric couples of chiral catechols, with an excellent discrimination capability for Dopa-OMe enantiomers and a different substrate dependence, hyperbolic or with substrate inhibition, for the L- or D- enantiomers, respectively. [Cu(mXPhI)] is active in a tyrosinase-like sulfoxidation of organic sulfides. The monooxygenase reaction requires a reducing co-substrate (NHOH) and yields sulfoxide with significant enantiomeric excess (e.e.). Experiments with O and thioanisole yielded sulfoxide with 77% incorporation of O, indicating a reaction occurring mostly through direct oxygen transfer from the copper active intermediate to the sulfide. This mechanism and the presence of the chiral center of the ligand in the immediate copper coordination sphere are responsible for the good enantioselectivity observed.
使用模型化合物模拟酪氨酸酶活性的一个挑战是再现其对映选择性。良好的对映选择性需要刚性和靠近活性位点的手性中心。在这项研究中,报道了一种新的手性铜配合物[Cu(mXPhI)]的合成,该配合物基于含有立体中心的 - 二甲苯基-双(咪唑)-双(苯并咪唑)配体,该立体中心带有直接连接在铜螯合环上的苄基残基。结合实验表明,两个金属中心之间的合作很弱,可能是由于苄基基团的空间位阻。双核(II)配合物[Cu(mXPhI)]在手性儿茶酚对映体的氧化中具有催化活性,对 Dopa-OMe 对映体具有极好的分辨能力,而对 L-或 D-对映体则具有不同的底物依赖性,分别是双曲线或底物抑制。[Cu(mXPhI)]在有机硫化物的酪氨酸酶样磺氧化中具有活性。单加氧酶反应需要还原辅底物(NHOH),并生成具有显著对映过量(ee)的亚砜。用 O 和苯甲硫醚进行的实验得到了 77%的 O 掺入的亚砜,表明反应主要通过铜活性中间体向硫化物的直接氧转移发生。这种机制和配体手性中心在铜配位球中的存在是观察到的良好对映选择性的原因。