Calhoun Jennifer R, Bell Caleb B, Smith Thomas J, Thamann Thomas J, DeGrado William F, Solomon Edward I
Department of Biochemistry and Biophysics, School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6059, USA.
J Am Chem Soc. 2008 Jul 23;130(29):9188-9. doi: 10.1021/ja801657y. Epub 2008 Jun 24.
The DFsc and DFscE11D de novo designed protein scaffolds support biomimetic diiron cofactor sites that react with dioxygen forming a 520 nm "intermediate" species with an apparent pseudo-first-order formation rate constant of 2.2 and 4.8 s-1, respectively. Resonance Raman spectroscopy shows that this absorption feature is due to a phenolate-to-ferric charge transfer transition arising from a single tyrosine residue coordinating terminally to one of the ferric ions in the site. Phenol coordination could provide a proton to promote rapid loss of a putative peroxo species.
从头设计的DFsc和DFscE11D蛋白质支架支持仿生双铁辅因子位点,该位点与双氧反应形成520 nm的“中间体”物种,其表观准一级形成速率常数分别为2.2和4.8 s-1。共振拉曼光谱表明,这种吸收特征是由于一个酪氨酸残基末端配位到该位点的一个铁离子上而产生的酚盐到铁的电荷转移跃迁。酚配位可以提供一个质子,以促进假定的过氧物种的快速损失。