Faculty of Science, Department of Organic and Nuclear Chemistry, Charles University in Prague, Hlavova 2030/8, 128 43 Prague 2, Czech Republic.
Chemistry. 2009 Dec 14;15(48):13399-405. doi: 10.1002/chem.200901645.
The structure and reactivity of a complex of zinc(II), water, acetic acid, and acetohydroxamic acid, in which one of the acids is deprotonated, is investigated by means of mass spectrometry, labeling studies, and density functional calculations to unravel the exceptional binding properties of hydroxamic acids towards zinc-containing enzymes at the molecular level. It is shown that acetohydroxamic acid is deprotonated in the complex, whereas acetic acid is present in its neutral form. The binding energies of the ligands towards zinc increase in the following order: water<acetic acid<acetohydroxamic acid. The structure of the complex and its fragmentation provide experimental evidence for the proposed mode of operation of drugs based on hydroxamic acids. Furthermore, coordinatively unsaturated complexes of zinc and acetohydroxamic acid undergo a zinc-assisted Lossen rearrangement followed by elimination of water if acetohydroxamic acid is present as a neutral ligand, or by loss of methylisocyanate if acetohydroxamic acid is deprotonated.
采用质谱、标记研究和密度泛函计算的方法,研究了锌(II)、水、乙酸和乙酰羟肟酸的配合物的结构和反应性,其中一种酸被去质子化,以揭示羟肟酸在分子水平上对含锌酶的特殊结合性质。结果表明,在配合物中乙酰羟肟酸被去质子化,而乙酸以中性形式存在。配体与锌的结合能按以下顺序增加:水<乙酸<乙酰羟肟酸。配合物的结构及其碎片为基于羟肟酸的药物的作用模式提供了实验证据。此外,如果乙酰羟肟酸作为中性配体存在,则配位不饱和的锌和乙酰羟肟酸配合物会发生锌辅助的Lossen 重排,随后如果存在水则会消除水,或者如果乙酰羟肟酸被去质子化,则会消除甲基异氰酸酯。