Smith Thomas S, Pecoraro Vincent L
Department of Chemistry, The University of Michigan, Ann Arbor, Michigan 48109-1055, USA.
Inorg Chem. 2002 Dec 16;41(25):6754-60. doi: 10.1021/ic025650d.
In addition to halide oxidation, the vanadium haloperoxidases are capable of oxidizing sulfides to sulfoxides. Four vanadium complexes with tripodal amine ligands, K[VO(O(2))(heida)] (1), VO(2)(bpg) (2), K[VO(2)(ada)] (3), and K(2)[VO(O(2))(nta)] (4), previously shown to perform bromide oxidation (Colpas, G. J.; Hamstra, B. J.; Kampf, J. W.; Pecoraro, V. L. J. Am. Chem. Soc. 1996, 118, 3469-3477), have now been shown to oxidize aryl alkyl sulfides to the corresponding sulfoxides. The oxidation was observed by the disappearance of thioanisole's ultraviolet absorption at 290 nm, by the change in the aromatic region of the (1)H NMR spectrum of the sulfides, and by changes in the complexes' (51)V NMR spectra. The amount of methyl phenyl sulfide oxidized in 3 h was 1000 equiv (per metal complex). The oxidation product is almost exclusively sulfoxide, with very little sulfone (less than 3% over a 3 h experiment) formed. This is consistent with an electrophilic oxidation mechanism, as had been proposed for oxidation of bromide by 1-4. The rate was found to be first order in substrate concentration, similar to the rate law observed for bromide oxidation. Unlike the bromide oxidation, the equivalent of acid required for peroxovanadium complex activation is not consumed. The complexes 1-4 are not reactive with styrene or cyclooctene. The relevance of these reactions to the mechanism of the vanadium haloperoxidases and, more generally, peroxovanadium oxygenation of sulfides will be discussed.
除了卤化物氧化反应外,钒卤过氧化物酶还能够将硫化物氧化为亚砜。四种带有三脚架型胺配体的钒配合物,K[VO(O₂)(heida)] (1)、VO₂(bpg) (2)、K[VO₂(ada)] (3) 和K₂[VO(O₂)(nta)] (4),之前已证明它们能进行溴化物氧化反应(科尔帕斯,G. J.;哈姆斯特拉,B. J.;坎普夫,J. W.;佩科拉罗,V. L. 《美国化学会志》1996年,118卷,3469 - 3477页),现在已证明它们能将芳基烷基硫化物氧化为相应的亚砜。通过硫代苯甲醚在290 nm处紫外吸收的消失、硫化物¹H NMR谱芳香区的变化以及配合物⁵¹V NMR谱的变化观察到了氧化反应。在3小时内被氧化的甲基苯基硫化物的量为1000当量(每金属配合物)。氧化产物几乎全是亚砜,形成的砜很少(在3小时的实验中少于3%)。这与亲电氧化机制一致,正如之前针对1 - 4对溴化物的氧化所提出的那样。发现反应速率对底物浓度呈一级反应,这与观察到的溴化物氧化反应的速率定律相似。与溴化物氧化反应不同,过氧钒配合物活化所需的酸当量未被消耗。配合物1 - 4与苯乙烯或环辛烯不发生反应。将讨论这些反应与钒卤过氧化物酶机制以及更一般地与过氧钒对硫化物的氧化作用的相关性。