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Synthetic Heme Selenolate: Spectral and Reactivity Differences from Synthetic Heme Thiolate

机译:合成血红素烯醇盐:与合成血红素硫醇酸盐的光谱和反应性差异

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The relationship between the potent catalytic reactivity of cytochrome P450 and the electron-donating character of the axial thiolate ligand has long been investigated. Here, we synthesize the first synthetic iron porphyrin coordinated by selenolate (Se-SR), which is a better electron-donor than thiolate. At ordinary temperature, the spin state of heme selenolate Se-SR is lower (S = 3/2) than that of our previously synthesized SR complex (S = 5/2), which is structurally identical with complex Se-SR except that the axial ligand is thiolate. The N-O stretching mode of the NO- Se-SR complex clearly indicates that the electron-donating trans-effect of selenolate is larger than that of thiolate. A cyclic voltammogram of Se-SR revealed that the Fe~(III)/Fe~(IV) redox couple of Se-SR is lower than that of SR, but the two potentials are unexpectedly identical in the case of the Fe~(II)/Fe~(III) redox couple. The catalytic activity of complex Se-SR is 13-fold higher than that of SR complex in substituted phenol oxidation with cumene hydroperoxide, which may reflect the O-O bond cleavage rate. On the other hand, the results of alkane-alkene competitive oxidation indicate that the active intermediate derived from SR has a greater preference than that derived from Se-SR for oxidizing alkane, although Se-SR gave a higher total product yield. Thus, the active intermediate derived from heme thiolate is more effective than that derived from heme selenolate for alkane hydroxylation. This is consistent with the emergence in nature of heme thiolate structure, not heme selenolate, in cytochrome P450, based on its function in alkane hydroxylation.
机译:长期以来研究了细胞色素P450的有效催化反应性与轴向硫醇酸酯配体的电子赋予的关系。这里,我们合成由硒固醇(SE-SR)协调的第一合成铁卟啉,其是比硫醇酸盐更好的电子给子。在普通温度下,血红素硒固醇酸盐SE-SR的旋转状态低于我们先前合成的SR复合物(S = 5/2)的旋转状态,其与复杂的SE-SR构造相同,除了轴向配体是硫醇酸盐。 NO-SE-SR复合物的N-O拉伸模式清楚地表明Selenolate的电子反式效应大于硫醇酸盐。 SE-SR的循环伏安图显示,SE-SR的Fe〜(III)/ Fe〜(iv)氧化还原耦合低于SR的循环耦合,但在FE〜(II )/ fe〜(iii)氧化还原夫妇。复合SE-Sr的催化活性高于二烯烃氧化中的Sr复合物的13倍,所述异丙烯氧化氧化氢氧化物可以反映O-O键切割率。另一方面,烷烃 - 烯烃竞争性氧化的结果表明,衍生自SR的活性中间体具有比衍生自SE-SR的偏好,用于氧化烷烃,尽管SE-SR较高,但SE-SR获得了更高的总产值。因此,源自血红素硫醇酸盐的活性中间体比衍生自氟硒酸盐酯的烷烃羟基化更有效。这与血红素硫醇结构,而不是细胞色素P450中的血红素硫醇结构,而不是血红素硒酸盐的出现一致。

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