Institute for Materials Chemistry and Engineering, Kyushu University, Higashi-ku, Fukuoka 812-8581, Japan.
J Am Chem Soc. 2010 Mar 24;132(11):3672-3. doi: 10.1021/ja1001955.
The low-spin end-on ferric peroxo heme intermediate has been proposed as an alternative reactive intermediate involved in the catalytic cycles of enzymes such as nitric oxide synthase and cytochrome P450. This transient heme intermediate has never been captured using synthetic heme models. We demonstrate herein our success in the solution preparation of such an end-on ferric peroxo intermediate derived from a heme model, which features both a group hanging over the porphyrin macrocycle and a covalently appended axial imidazole ligand, through one-electron reduction of its ferric superoxo precursor. The obtained ferric peroxo intermediate was further transformed into the corresponding ferric hydroperoxo species upon protonation. This heme model compound provides a convenient system for sequential preparation of the important and biologically relevant superoxo/peroxo/hydroperoxo heme intermediates through an oxygenation/one-electron reduction/protonation process similar to the mechanisms used by enzyme systems.
低自旋顺式过氧亚铁血红素中间物已被提议为参与一氧化氮合酶和细胞色素 P450 等酶的催化循环的替代反应中间物。这种瞬态血红素中间物从未使用合成血红素模型捕获过。本文证明了我们在溶液中成功制备了一种源自血红素模型的顺式过氧亚铁中间物,该模型具有一个悬挂在卟啉大环上的基团和一个共价连接的轴向咪唑配体,通过其铁过氧超氧化物前体的单电子还原来实现。所得的过氧亚铁中间物在质子化时进一步转化为相应的过氧氢亚铁中间物。该血红素模型化合物通过类似于酶系统使用的机制的氧合/单电子还原/质子化过程,为重要的和生物学相关的超氧/过氧/过氢亚铁血红素中间物的顺序制备提供了一个方便的体系。