Amorati Riccardo, Catarzi Francesca, Menichetti Stefano, Pedulli Gian Franco, Viglianisi Caterina
Dipartimento di Chimica Organica "A. Mangini", Università di Bologna, Via S. Donato 11, 40126 Bologna, Italy.
J Am Chem Soc. 2008 Jan 9;130(1):237-44. doi: 10.1021/ja075554h. Epub 2007 Dec 12.
Rotation about the Ar-S bond in ortho-(alkylthio)phenols strongly affects the bond dissociation enthalpy (BDE) and the reactivity of the OH group. Newly synthesized sulfur containing heterocycles 3 and 4, where the -SR group is almost coplanar with the phenolic ring, are characterized by unusually low BDE(O-H) values (79.6 and 79.2 kcal/mol, respectively) and by much higher reactivities toward peroxyl radicals than the ortho-methylthio derivative 1 (82.0 kcal/mol). The importance of the intramolecular hydrogen bond (IHB) in determining the BDE(O-H) was demonstrated by FT-IR experiments, which showed that in heterocycles 3 and 4 the IHB between the phenolic OH group and the S atom is much weaker than that present in 1. Since the IHB can be formed only if the -SR group adopts an out-of-plane geometry, this interaction is possible only in the methylthio derivative 1 and not in 3 and 4. The additive contribution to the phenolic BDE(O-H) of the -SR substituent therefore varies from -3.1 to +2.8 kcal/mol for the in-plane and out-of-plane conformations, respectively. These results may be relevant to understanding the role of the tyrosine-cysteine link in the active site of galactose oxidase, an important enzyme that catalyzes the two-electron aerobic oxidation of primary alcohols to aldehydes. The switching of the ortho -SR substituent between perpendicular and planar conformations may account for the catalytic efficiency of this enzyme.
邻(烷硫基)苯酚中围绕Ar-S键的旋转强烈影响键解离焓(BDE)和OH基团的反应活性。新合成的含硫杂环化合物3和4,其中-SR基团几乎与酚环共面,其特征在于异常低的BDE(O-H)值(分别为79.6和79.2 kcal/mol),并且对过氧自由基的反应活性比邻甲硫基衍生物1(82.0 kcal/mol)高得多。傅里叶变换红外光谱(FT-IR)实验证明了分子内氢键(IHB)在确定BDE(O-H)中的重要性,该实验表明在杂环化合物3和4中,酚羟基与S原子之间的IHB比化合物1中的弱得多。由于只有当-SR基团采取平面外几何构型时才能形成IHB,所以这种相互作用仅在甲硫基衍生物1中可能存在,而在化合物3和4中不存在。因此,-SR取代基对酚类BDE(O-H)的加成贡献对于平面内和平面外构象分别从-3.1到+2.8 kcal/mol变化。这些结果可能与理解酪氨酸-半胱氨酸连接在半乳糖氧化酶活性位点中的作用有关,半乳糖氧化酶是一种催化伯醇有氧氧化为醛的双电子反应的重要酶。邻位-SR取代基在垂直和平坦构象之间的转换可能解释了这种酶的催化效率。