Department of Chemistry, Massachusetts Institute of Technology , 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.
Biochemistry. 2013 Dec 10;52(49):8907-15. doi: 10.1021/bi401494f. Epub 2013 Nov 22.
The reversible Y-O•/Y-OH redox properties of the α3Y model protein allow access to the electrochemical and thermodynamic properties of 3,5-difluorotyrosine. The unnatural amino acid has been incorporated at position 32, the dedicated radical site in α3Y, by in vivo nonsense codon suppression. Incorporation of 3,5-difluorotyrosine gives rise to very minor structural changes in the protein scaffold at pH values below the apparent pK (8.0±0.1) of the unnatural residue. Square-wave voltammetry on α3(3,5)F2Y provides an E°'(Y-O•/Y-OH) of 1026±4 mV versus the normal hydrogen electrode (pH 5.70±0.02) and shows that the fluoro substitutions lower the E°' by -30±3 mV. These results illustrate the utility of combining the optimized α3Y tyrosine radical system with in vivo nonsense codon suppression to obtain the formal reduction potential of an unnatural aromatic residue residing within a well-structured protein. It is further observed that the protein E°' values differ significantly from peak potentials derived from irreversible voltammograms of the corresponding aqueous species. This is notable because solution potentials have been the main thermodynamic data available for amino acid radicals. The findings in this paper are discussed relative to recent mechanistic studies of the multistep radical-transfer process in Escherichia coli ribonucleotide reductase site-specifically labeled with unnatural tyrosine residues.
α3Y 模型蛋白的可逆 Y-O•/Y-OH 氧化还原性质可用于研究 3,5-二氟酪氨酸的电化学和热力学性质。该非天然氨基酸通过体内无义密码子抑制作用被引入到 α3Y 的专门自由基部位 32 位。在 pH 值低于非天然残基的表观 pK(8.0±0.1)时,3,5-二氟酪氨酸的掺入会导致蛋白质支架发生极小的结构变化。α3(3,5)F2Y 的方波伏安法提供了 1026±4 mV 相对于标准氢电极(pH 5.70±0.02)的 E°'(Y-O•/Y-OH),并表明氟取代使 E°'降低了-30±3 mV。这些结果表明,将优化的 α3Y 酪氨酸自由基体系与体内无义密码子抑制相结合,可获得位于结构良好的蛋白质内的非天然芳香残基的形式还原电位。此外,还观察到蛋白质的 E°'值与相应水相物种不可逆伏安法得出的峰电位有很大差异。这是值得注意的,因为溶液电位是氨基酸自由基的主要热力学数据。本文的研究结果与最近对大肠杆菌核糖核苷酸还原酶中特异标记的非天然酪氨酸残基的多步自由基转移过程的机制研究进行了讨论。