Physiology of Microorganisms, Ruhr-University Bochum, Bochum, Germany.
Spectrochim Acta A Mol Biomol Spectrosc. 2012 Mar;88:235-40. doi: 10.1016/j.saa.2011.12.011. Epub 2011 Dec 13.
Heme oxygenases (HO) are widely distributed enzymes involved in the degradation of heme to biliverdin, carbon monoxide and Fe(2+). The model plant Arabidopsis thaliana possesses three functional HOs (HY1, HO3 and HO4) which are thus far biochemically indistinguishable. Here, we investigate binding of the reaction product and putative inhibitor CO to these three HOs with various spectroscopic techniques: Nanosecond time-resolved absorption, millisecond time-resolved multi-wavelength absorption and Fourier-transform-infrared difference spectroscopy. Kinetics of CO rebinding were found to differ substantially among the HOs. At low CO concentrations a novel intermediate was identified for HO3 and HO4, substantially slowing down rebinding. All HOs show relatively slow geminate rebinding of CO indicating the existence of an additional transient binding niche for CO. The positions found for the IR absorptions of ν(CO) and ν(FeC) suggest a nonpolar distal binding site for all three HOs. The frequency of the ν(FeC) vibration was calculated by a combination band on which we report here for the first time. Another band in the FTIR difference spectrum could be assigned to a histidine residue, probably the proximal ligand of the heme-iron. The observed different rebinding kinetics among the HOs could indicate adaptation of the HOs to different environments.
血红素加氧酶(HO)广泛分布于参与血红素降解为胆绿素、一氧化碳和 Fe(2+)的酶。拟南芥(Arabidopsis thaliana)作为模式植物拥有三种功能齐全的 HO(HY1、HO3 和 HO4),它们在生化上是无法区分的。在这里,我们使用各种光谱技术研究反应产物和潜在抑制剂 CO 与这三种 HO 的结合:纳秒时间分辨吸收、毫秒时间分辨多波长吸收和傅里叶变换红外差谱。发现 CO 的复合作用于 HO3 和 HO4 之间存在很大差异。在低 CO 浓度下,为 HO3 和 HO4 鉴定出一种新的中间产物,大大减缓了复合作用。所有 HO 都显示出相对较慢的 CO 复合再结合,表明 CO 存在额外的瞬态结合位。发现 ν(CO)和 ν(FeC)的 IR 吸收位置表明所有三种 HO 都具有非极性的远端结合位点。通过组合带计算了 ν(FeC)振动的频率,这是我们首次在此报告。FTIR 差谱中的另一个带可以分配给组氨酸残基,可能是血红素铁的近端配体。HO 之间观察到的不同复合作用动力学可能表明 HO 适应不同的环境。