Sharonov Y A, Mineyev A P, Livshitz M A, Sharonova N A, Zhurkin V B, Lysov Y P
Biophys Struct Mech. 1978 Apr 13;4(2):139-58. doi: 10.1007/BF00539228.
The magnetic circular dichroism spectra (MCD) recorded for the visible and near-UV regions of high-spin ferrous derivatives of myoglobin, hemoglobin, hemoglobin dimers and isolated chains as well as of horseradish peroxidase at pH 6.8 and 11.4 have been compared at the room and liquid nitrogen temperatures. The MCD of the Q00- and QV-bands have been shown to be sensitive to structural differences in the heme environment of these hemoproteins. The room temperature visible MCD of native hemoglobin differs from that of myoglobin, hemoglobin dimers and isolated chains as well as from that of model pentacoordinated complex. The MCD of hemoglobin is characterized by the greater value of the MCD intensity ratio of derivative shape A-term in the Q00-band to the A-term in the QV-band. The evidneces are presented for the existence of two pH-dependent forms of ferroperoxidase, the neutral peroxidase shows the "hemoglobin-like" MCD, while the alkaline ferroperoxidase is characterized by the "myoglobin-like" MCD spectrum in the visible region. The differences in the MCD of deoxyhemoglobin and neutral ferroperoxidase as compared with other high-spin ferrous hemoproteins are considered to result from the constraints on heme group imposed by quaternary and/or tertiary protein structure. The differences between hemoporteins which are seen at the room temperature become more pronounced at liquid nitrogen temperature. Except the peak at approximately 580 nm in the MCD of deoxymyoglobin and reduced peroxidase at pH 11.4 the visible MCD does not show appreciable temperature dependent C-terms. The nature of the temperature dependent effect at approximately 580 nm is not clear. The Soret MCD of all hemoproteins studied are similar and are predominantly composed of the derivative-shaped C-terms as revealed by the increase of the MCD peaks approximately in accordance with Boltzmann distribution. The interpretation of temperature-dependent MCD observed for the Soret band has been made in terms of porphyrin to Fe-iron charge-transfer electronic transition which may be assigned as b( pi) leads to 3d. This charge-transfer band is strongly overlapped with usual B(pi --pi*) band resulting in diffuse Soret band. Adopting that only two normal vibrations are sinphase with charge-transfer transition the extracted C-terms of the Soret MCD have been fitted by theoretical dispersion curves.
已对肌红蛋白、血红蛋白、血红蛋白二聚体和分离链以及辣根过氧化物酶在pH 6.8和11.4时的高自旋亚铁衍生物在可见光和近紫外区域记录的磁圆二色光谱(MCD)在室温和液氮温度下进行了比较。已表明Q00-和QV-带的MCD对这些血红蛋白血红素环境中的结构差异敏感。天然血红蛋白在室温下的可见MCD不同于肌红蛋白、血红蛋白二聚体和分离链以及模型五配位络合物的MCD。血红蛋白的MCD特征在于Q00-带中衍生物形状A项的MCD强度比与QV-带中A项的MCD强度比更大。有证据表明存在两种pH依赖性的亚铁过氧化物酶形式,中性过氧化物酶显示出“血红蛋白样”MCD,而碱性亚铁过氧化物酶在可见光区域的特征是“肌红蛋白样”MCD光谱。与其他高自旋亚铁血红蛋白相比,脱氧血红蛋白和中性亚铁过氧化物酶的MCD差异被认为是由于四级和/或三级蛋白质结构对血红素基团的限制所致。在室温下观察到的血红蛋白之间的差异在液氮温度下变得更加明显。除了脱氧肌红蛋白和pH 11.4时还原过氧化物酶的MCD中约580 nm处的峰外,可见MCD没有显示出明显的温度依赖性C项。约580 nm处温度依赖性效应的性质尚不清楚。所研究的所有血红蛋白的Soret MCD相似,并且如通过MCD峰根据玻尔兹曼分布近似增加所揭示的,主要由衍生物形状的C项组成。已根据卟啉到铁-铁电荷转移电子跃迁对观察到的Soret带的温度依赖性MCD进行了解释,该跃迁可指定为b(π)→3d。该电荷转移带与通常的B(π-π*)带强烈重叠,导致Soret带弥散。假设只有两个正常振动与电荷转移跃迁同相,已通过理论色散曲线拟合了提取的Soret MCD的C项。