Department of Chemistry and Howard Hughes Medical Institute, University of Illinois at Urbana-Champaign, 600 S. Mathews Ave, Urbana, IL 61801, USA.
Curr Opin Struct Biol. 2010 Dec;20(6):673-83. doi: 10.1016/j.sbi.2010.08.005. Epub 2010 Oct 14.
A growing number of non-heme-iron oxygenases and oxidases catalyze reactions for which the well-established mechanistic paradigm involving a single C-H-bond-cleaving intermediate of the Fe(IV)-oxo (ferryl) type [1(•)] is insufficient to explain the chemistry. It is becoming clear that, in several of these cases, Fe(III)-superoxide complexes formed by simple addition of O(2) to the reduced [Fe(II)] cofactor initiate substrate oxidation by abstracting hydrogen [2,3(•)]. This substrate-oxidizing entry route into high-valent-iron intermediates makes possible an array of complex and elegant oxidation reactions without the consumption of valuable reducing equivalents. Examples of this novel mechanistic strategy are discussed with the goal of bringing forth unifying principles.
越来越多的非血红素铁加氧酶和氧化酶催化的反应,其成熟的机制范例涉及单个 Fe(IV)-氧(高铁)类型的 C-H 键断裂中间体 [1(•)] 不足以解释其化学性质。越来越明显的是,在这些情况中的一些中,通过 O(2)简单添加到还原的 [Fe(II)]辅因子上形成的 Fe(III)-超氧化物复合物通过提取氢 [2,3(•)] 引发底物氧化。这种进入高价铁中间体的底物氧化途径使得在不消耗有价值的还原当量的情况下,进行一系列复杂而优雅的氧化反应成为可能。讨论了这种新颖的机制策略的实例,以期提出统一的原则。