Department of Chemistry, University of Leicester, Leicester, UK.
FEBS J. 2012 May;279(9):1632-9. doi: 10.1111/j.1742-4658.2011.08425.x. Epub 2011 Dec 5.
Guaiacol is a universal substrate for all peroxidases, and its use in a simple colorimetric assay has wide applications. However, its exact binding location has never been defined. Here we report the crystal structures of guaiacol bound to cytochrome c peroxidase (CcP). A related structure with phenol bound is also presented. The CcP-guaiacol and CcP-phenol crystal structures show that both guaiacol and phenol bind at sites distinct from the cytochrome c binding site and from the δ-heme edge, which is known to be the binding site for other substrates. Although neither guaiacol nor phenol is seen bound at the δ-heme edge in the crystal structures, inhibition data and mutagenesis strongly suggest that the catalytic binding site for aromatic compounds is the δ-heme edge in CcP. The functional implications of these observations are discussed in terms of our existing understanding of substrate binding in peroxidases [Gumiero A et al. (2010) Arch Biochem Biophys 500, 13-20].
愈创木酚是所有过氧化物酶的通用底物,其在简单比色测定中的应用非常广泛。然而,其确切的结合位置从未被定义过。在这里,我们报告了愈创木酚与细胞色素 c 过氧化物酶(CcP)结合的晶体结构。同时还呈现了一个与之相关的结合苯酚的结构。CcP-愈创木酚和 CcP-苯酚的晶体结构表明,愈创木酚和苯酚都结合在不同于细胞色素 c 结合位点和δ-血红素边缘的位置,而后者已知是其他底物的结合位点。尽管在晶体结构中都没有看到愈创木酚或苯酚结合在δ-血红素边缘,但抑制数据和突变分析强烈表明,CcP 中芳香化合物的催化结合位点是δ-血红素边缘。根据我们对过氧化物酶中底物结合的现有理解,讨论了这些观察结果的功能意义[Gumiero A 等人。(2010)Arch Biochem Biophys 500, 13-20]。