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过氧二铜(II)配合物对酚类化合物的羟基化作用:对酪氨酸酶作用机制的进一步深入了解

Hydroxylation of phenolic compounds by a peroxodicopper(II) complex: further insight into the mechanism of tyrosinase.

作者信息

Palavicini Sara, Granata Alessandro, Monzani Enrico, Casella Luigi

机构信息

Department of General Chemistry, University of Pavia, 27100 Pavia, Italy.

出版信息

J Am Chem Soc. 2005 Dec 28;127(51):18031-6. doi: 10.1021/ja0544298.

Abstract

The dicopper(I) complex [Cu2(MeL66)]2+ (where MeL66 is the hexadentate ligand 3,5-bis-{bis-[2-(1-methyl-1H-benzimidazol-2-yl)-ethyl]-amino}-meth ylbenzene) reacts reversibly with dioxygen at low temperature to form a mu-peroxo adduct. Kinetic studies of O2 binding carried out in acetone in the temperature range from -80 to -55 degrees C yielded the activation parameters DeltaH1(not equal) = 40.4 +/- 2.2 kJ mol(-1), DeltaS1)(not equal) = -41.4 +/- 10.8 J K(-1) mol(-1) and DeltaH(-1)(not equal) = 72.5 +/- 2.4 kJ mol(-1), DeltaS(-1)(not equal) = 46.7 +/- 11.1 J K(-1) mol(-1) for the forward and reverse reaction, respectively, and the binding parameters of O2 DeltaH degrees = -32.2 +/- 2.2 kJ mol(-1) and DeltaS degrees = -88.1 +/- 10.7 J K(-1) mol(-1). The hydroxylation of a series of p-substituted phenolate salts by [Cu2(MeL66)O2]2+ studied in acetone at -55 degrees C indicates that the reaction occurs with an electrophilic aromatic substitution mechanism, with a Hammett constant rho = -1.84. The temperature dependence of the phenol hydroxylation was studied between -84 and -70 degrees C for a range of sodium p-cyanophenolate concentrations. The rate plots were hyperbolic and enabled to derive the activation parameters for the monophenolase reaction DeltaH(not equal)ox = 29.1 +/- 3.0 kJ mol(-1), DeltaS(not equal)ox = -115 +/- 15 J K(-1) mol(-1), and the binding parameters of the phenolate to the mu-peroxo species DeltaH degrees(b) = -8.1 +/- 1.2 kJ mol(-1) and DeltaS degrees(b) = -8.9 +/- 6.2 J K(-1) mol(-1). Thus, the complete set of kinetic and thermodynamic parameters for the two separate steps of O2 binding and phenol hydroxylation have been obtained for [Cu2(MeL66)]2+.

摘要

二价铜(I)配合物[Cu2(MeL66)]2+(其中MeL66是六齿配体3,5-双-{双-[2-(1-甲基-1H-苯并咪唑-2-基)-乙基]-氨基}-甲基苯)在低温下与氧气可逆反应形成μ-过氧加合物。在丙酮中于-80至-55℃温度范围内进行的氧气结合动力学研究得出,正向反应的活化参数ΔH1(≠) = 40.4±2.2 kJ mol(-1),ΔS1)(≠) = -41.4±10.8 J K(-1) mol(-1),逆向反应的活化参数ΔH(-1)(≠) = 72.5±2.4 kJ mol(-1),ΔS(-1)(≠) = 46.7±11.1 J K(-1) mol(-1),以及氧气的结合参数ΔH° = -32.2±2.2 kJ mol(-1)和ΔS° = -88.1±10.7 J K(-1) mol(-1)。在-55℃的丙酮中对一系列对取代酚盐与[Cu2(MeL66)O2]2+的羟基化反应研究表明,该反应通过亲电芳香取代机理进行,哈米特常数ρ = -1.84。在-84至-70℃范围内,针对一系列对氰基酚钠浓度研究了酚羟基化反应的温度依赖性。速率图呈双曲线型,由此得出单酚酶反应的活化参数ΔH(≠)ox = 29.1±3.0 kJ mol(-1),ΔS(≠)ox = -115±15 J K(-1) mol(-1),以及酚盐与μ-过氧物种的结合参数ΔH°(b) = -8.1±1.2 kJ mol(-1)和ΔS°(b) = -8.9±6.2 J K(-1) mol(-1)。因此,已获得[Cu2(MeL66)]2+的氧气结合和酚羟基化这两个独立步骤完整的动力学和热力学参数集。

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