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Kinetic and equilibrium studies of acrylonitrile binding to cytochrome c peroxidase and oxidation of acrylonitrile by cytochrome c peroxidase compound I

机译:丙烯腈与细胞色素c过氧化物酶结合和丙烯腈被细胞色素c过氧化物酶化合物I氧化的动力学和平衡研究

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摘要

Ferric heme proteins bind weakly basic ligands and the binding affinity is often pH dependent due to protonation of the ligand as well as the protein. In an effort to find a small, neutral ligand without significant acid/base properties to probe ligand binding reactions in ferric heme proteins we were led to consider the organonitriles. Although organonitriles are known to bind to transition metals, we have been unable to find any prior studies of nitrile binding to heme proteins. In this communication we report on the equilibrium and kinetic properties of acrylonitrile binding to cytochrome c peroxidase (CcP) as well as the oxidation of acrylonitrile by CcP compound I. Acrylonitrile binding to CcP is independent of pH between pH 4 and 8. The association and dissociation rate constants are 0.32 ± 0.16 M−1s−1 and 0.34 ± 0.15 s−1, respectively, and the independently measured equilibrium dissociation constant for the complex is 1.1 ± 0.2 M. We have demonstrated for the first time that acrylonitrile can bind to a ferric heme protein. The binding mechanism appears to be a simple, one-step association of the ligand with the heme iron. We have also demonstrated that CcP can catalyze the oxidation of acrylonitrile, most likely to 2-cyanoethylene oxide in a “peroxygenase”-type reaction, with rates that are similar to rat liver microsomal cytochrome P450-catalyzed oxidation of acrylonitrile in the monooxygenase reaction. CcP compound I oxidizes acrylonitrile with a maximum turnover number of 0.61 min−1 at pH 6.0.
机译:铁血红素蛋白结合弱碱性配体,并且由于配体和蛋白质的质子化,结合亲和力通常是pH依赖性的。为了找到一个小的,没有明显酸/碱性质的中性配体来探测血红素铁蛋白中的配体结合反应,我们不得不考虑使用有机腈。尽管已知有机腈会与过渡金属结合,但我们至今尚未找到任何腈与血红素蛋白结合的研究。在本交流中,我们报道了丙烯腈与细胞色素c过氧化物酶(CcP)结合的平衡和动力学性质,以及CcP化合物I对丙烯腈的氧化作用。与CcP结合的丙烯腈与pH介于4和8之间的pH无关。解离速率常数分别为0.32±0.16 M −1 s -1 和0.34±0.15 s -1 ,并且独立测量的平衡解离络合物的常数为1.1±0.2M。我们首次证明了丙烯腈可以与血红素铁蛋白结合。结合机制似乎是配体与血红素铁的简单一步结合。我们还证明了CcP可以在“过加氧酶”型反应中催化丙烯腈的氧化,最有可能转化为2-氰基环氧乙烷,其速率与大鼠肝脏微粒体细胞色素P450催化的单加氧酶反应中的丙烯腈的氧化速率相似。 CcP化合物I在pH 6.0时,氧化丙烯腈的最大周转数为0.61 min -1

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