Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21212, USA.
J Am Chem Soc. 2010 Sep 8;132(35):12214-5. doi: 10.1021/ja105591q.
The synthesis of structural and functional models of the active site of the nonheme iron enzyme cysteine dioxygenase (CDO) is reported. A bis(imino)pyridine ligand scaffold was employed to synthesize a mononuclear ferrous complex, Fe(II)(LN(3)S)(OTf) (1), which contains three neutral nitrogen donors and one anionic thiolato donor. Complex 1 is a good structural model of the Cys-bound active site of CDO. Reaction of 1 with O(2) results in oxygenation of the thiolato sulfur, affording the sulfonato complex Fe(II)(LN(3)SO(3))(OTf) (2) under mild conditions. Isotope labeling studies show that O(2) is the sole source of O atoms in the product and that the reaction proceeds via a dioxygenase-type mechanism for two out of three O atoms added, analogous to the dioxygenase reaction of CDO. The zinc(II) analog, Zn(LN(3)S)(OTf) (4), was prepared and found to be completely unreactive toward O(2), suggesting a critical role for Fe(II) in the oxygenation chemistry observed for 1. To our knowledge, S-oxygenation mediated by an Fe(II)-SR complex and O(2) is unprecedented.
本文报道了非血红素铁酶半胱氨酸双加氧酶(CDO)活性部位的结构和功能模型的合成。采用双(亚氨基)吡啶配体骨架合成单核亚铁配合物 Fe(II)(LN(3)S)(OTf)(1),其中包含三个中性氮供体和一个阴离子硫醇供体。配合物 1 是 CDO 中 Cys 结合活性部位的良好结构模型。1 与 O(2)反应导致硫醇硫的氧化,在温和条件下生成磺酸盐配合物 Fe(II)(LN(3)SO(3))(OTf)(2)。同位素标记研究表明,O(2)是产物中 O 原子的唯一来源,并且反应通过双加氧酶型机制进行,其中三个 O 原子中的两个类似于 CDO 的双加氧酶反应。制备了锌(II)类似物 Zn(LN(3)S)(OTf)(4),并发现其对 O(2)完全没有反应性,表明 Fe(II)在观察到的 1 的氧合化学中起关键作用。据我们所知,由 Fe(II)-SR 配合物和 O(2)介导的 S 氧化是前所未有的。