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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Role of substrate on the conformational stability of the heme active site of cytochrome P450cam: effect of temperature and low concentrations of denaturants
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Role of substrate on the conformational stability of the heme active site of cytochrome P450cam: effect of temperature and low concentrations of denaturants

机译:底物对细胞色素P450cam血红素活性位点构象稳定性的作用:温度和低浓度变性剂的影响

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The effect of 1R-camphor on the conformational stability of the heme active site of cytochrome P450cam has been investigated. The absorption spectra of the heme moiety showed the presence of two hitherto unknown intermediates formed at low urea concentrations or during small temperature perturbations. The corresponding thermodynamic parameters were obtained by global fitting of the experimental data to a generalized sequential unfolding model at different wavelengths, which showed that the active conformation of the enzyme is stabilized by binding of the substrate at the active site. Circular-dichroism spectra of the enzyme in the visible- and far-UV region were studied to identify the critical range of denaturant concentration and the temperature at which the tertiary structure around the heme center was affected with almost no change in the secondary structure of the enzyme. This critical range of urea concentration was 0–2.8 M in the presence of camphor and 0–1.5 M in the absence of camphor. The tertiary structure of the enzyme was found to undergo conformational change in the temperature range 20–60 °C in the presence of the substrate and 20–47 °C in its absence. The spectral assignments of the intermediate species of the heme active site with the intact secondary structure of the enzyme were made by deconvolution of the Soret absorption spectra, and the results were analyzed to determine stabilization of the heme active-site geometry by 1R-camphor. Results showed that subtle conformational changes due to melting of the tertiary contacts in the active site lead to formation of intermediates which are coordinatively similar to the native enzyme. Analogous intermediate species might be responsible for leakage in the redox catalytic cycle of the enzyme.
机译:研究了1R-樟脑对细胞色素P450cam血红素活性位点构象稳定性的影响。血红素部分的吸收光谱显示在低尿素浓度下或在较小的温度扰动下形成的两种迄今未知的中间体的存在。通过将实验数据全局拟合到不同波长的广义顺序展开模型中,可以获得相应的热力学参数,这表明酶的活性构象通过底物在活性位点的结合得以稳定。研究了可见光和远紫外线区域中酶的圆二色性光谱,以确定变性剂浓度的临界范围和血红素中心周围三级结构受影响的温度,而血红素中心的二级结构几乎没有变化。酶。在存在樟脑的情况下,尿素的临界浓度范围为0–2.8 M,在没有樟脑的情况下为0–1.5M。发现该酶的三级结构在有底物的情况下在20–60°C的温度范围内发生构象变化,在没有底物的情况下在20–47°C的温度范围内发生构象变化。通过对Soret吸收光谱进行反卷积,确定具有完整酶二级结构的血红素活性位点中间物种的光谱分配,并分析结果以通过1R樟脑胶确定血红素活性位点几何形状的稳定性。结果表明,由于活性位点中三级接触的熔化而引起的细微构象变化导致形成与天然酶在配位上相似的中间体。类似的中间物种可能是造成酶氧化还原催化循环泄漏的原因。

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