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通过质子超精细共振光谱揭示的静止态和氰化物连接的重组细胞色素c过氧化物酶(H52L)活性位点的温度、pH和溶剂同位素依赖性特性。

Temperature, pH, and solvent isotope dependent properties of the active sites of resting-state and cyanide-ligated recombinant cytochrome c peroxidase (H52L) revealed by proton hyperfine resonance spectra.

作者信息

Satterlee James D, Savenkova Marina I, Foshay Miriam, Erman James E

机构信息

Department of Chemistry, Washington State University, Pullman, Washington 99164-4630, USA.

出版信息

Biochemistry. 2003 Sep 16;42(36):10772-82. doi: 10.1021/bi034633c.

Abstract

Comparative proton NMR studies have been carried out on high-spin and low-spin forms of recombinant native cytochrome c peroxidase (rCcP) and its His52 --> Leu variant. Proton NMR spectra of rCcP(H52L) (high spin) and rCcP(H52L)CN (low spin) reveal the presence of multiple enzyme forms in solution, whereas only single enzyme forms are found in spectra of wild-type and recombinant wild-type CcP and CcPCN near neutral pH. The spectroscopic behaviors of these forms have been studied in detail when pH, temperature, and solvent isotope composition were varied. For resting-state rCcP(H52L) the comparatively large NMR line widths compromise resolution, but two specific enzyme forms were found. They were interconvertible on the basis of varying temperature. For rCcP(H52L)CN four magnetically distinct enzyme forms were identified by NMR. It was found that these forms dynamically interconvert with changing pH, temperature, and solvent isotope composition (percent D(2)O). These studies have identified the alkaline titration of His52 and essentially identical alkaline enzyme forms for natWTCcPCN and rCcP(H52L)CN. From this work we interpret an essential role of His52 in CcP function to be preservation of a single active site structure in addition to the critical role of general base catalysis.

摘要

已对重组天然细胞色素c过氧化物酶(rCcP)及其His52→Leu变体的高自旋和低自旋形式进行了比较质子核磁共振研究。rCcP(H52L)(高自旋)和rCcP(H52L)CN(低自旋)的质子核磁共振谱显示溶液中存在多种酶形式,而在接近中性pH的野生型和重组野生型CcP及CcPCN的谱中仅发现单一酶形式。当pH、温度和溶剂同位素组成变化时,已详细研究了这些形式的光谱行为。对于静息态rCcP(H52L),相对较大的核磁共振线宽影响分辨率,但发现了两种特定的酶形式。它们在不同温度下可相互转化。对于rCcP(H52L)CN,通过核磁共振鉴定出四种磁性质不同的酶形式。发现这些形式会随着pH、温度和溶剂同位素组成(D₂O百分比)的变化而动态相互转化。这些研究确定了His52的碱性滴定以及天然野生型CcPCN和rCcP(H52L)CN基本相同的碱性酶形式。从这项工作中我们推断,His52在CcP功能中的重要作用除了一般碱催化的关键作用外,还在于保留单一活性位点结构。

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