Foshay Miriam C, Vitello Lidia B, Erman James E
Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, Illinois 60115, USA.
Biochemistry. 2004 May 4;43(17):5065-72. doi: 10.1021/bi036240j.
Replacement of the distal histidine, His-52, in cytochrome c peroxidase (CcP) with a lysine residue produces a mutant cytochrome c peroxidase, CcP(H52K), with spectral and kinetic properties significantly altered compared to those of the wild-type enzyme. Three spectroscopically distinct forms of the enzyme are observed between pH 4.0 and 8.0 with two additional forms, thought to be partially denatured forms, making contributions to the observed spectra at the pH extremes. CcP(H52K) exists in at least three, slowly interconverting conformational states over most of the pH range that was investigated. The side chain epsilon-amino group of Lys-52 has an apparent pK(a) of 6.4 +/- 0.2, and the protonation state of Lys-52 affects the spectral properties of the enzyme and the reactions with both hydrogen peroxide and HCN. In its unprotonated form, Lys-52 acts as a base catalyst facilitating the reactions of both hydrogen peroxide and HCN with CcP(H52K). The major form of CcP(H52K) reacts with hydrogen peroxide with a rate approximately 50 times slower than that of wild-type CcP but reacts with HCN approximately 3 times faster than does the wild-type enzyme. The major form of the mutant enzyme has a higher affinity for HCN than does native CcP.
将细胞色素c过氧化物酶(CcP)中的远端组氨酸His-52用赖氨酸残基取代,会产生一种突变型细胞色素c过氧化物酶CcP(H52K),其光谱和动力学性质与野生型酶相比有显著改变。在pH 4.0至8.0之间观察到该酶有三种光谱上不同的形式,另外还有两种形式,被认为是部分变性形式,在pH极值时对观察到的光谱有贡献。在研究的大部分pH范围内,CcP(H52K)至少存在三种缓慢相互转化的构象状态。Lys-52的侧链ε-氨基的表观pK(a)为6.4±0.2,Lys-52的质子化状态影响酶的光谱性质以及与过氧化氢和HCN的反应。在其未质子化形式下,Lys-52作为碱催化剂促进过氧化氢和HCN与CcP(H52K)的反应。CcP(H52K)的主要形式与过氧化氢反应的速率比野生型CcP慢约50倍,但与HCN反应的速率比野生型酶快约3倍。突变酶的主要形式对HCN的亲和力比天然CcP高。