Browett W R, Stillman M J
Biochim Biophys Acta. 1979 Apr 25;577(2):291-306. doi: 10.1016/0005-2795(79)90033-3.
Absorption, circular dichroism (CD) and magnetic circular dichroism (MCD) spectra of beef liver catalase at pH 5.0 and 6.9, and its complexes with NaF, KCNO, NaCNS, NaN3 and NaCN, have been measured between 250 nm and 700 nm at room temperature. The pH 6.9 native catalase MCD shows the presence of several additional transitions not resolved in the absorption spectrum. While these bands can be seen in the spectra of all the derivatives, with the exception of the cyanide, their relative intensities changes considerably between complexes. Of special interest in the MCD of ferric hemes is the signal intensity at about 400 nm and 620 nm. The data indicate that the MCD intensity at 620 nm increases as the high spin iron porphyrin fraction increases, reaching a maximum with the fluoride complex. The 430 nm band intensity increases as the proportion of low spin iron increases, reaching a maximum with the cyanide complex. The MCD spectra also indicate clearly the existence of spin mixtures in the complexes with CNO-, CNS-, and N3-, where both the 430 nm and 620 nm bands have appreciable intensity. It is significant that despite almost identical absorption spectra the CNS- complex has higher fraction of low spin iron than either the CNO- or the N3- species. The differences between the pH 5 and 6.9 MCD spectra of the native catalase suggest that the environment of the heme centre is sensitive to protonation.
已在室温下于250纳米至700纳米范围内测量了牛肉肝过氧化氢酶在pH 5.0和6.9时及其与NaF、KCNO、NaCNS、NaN₃和NaCN形成的配合物的吸收光谱、圆二色性(CD)光谱和磁圆二色性(MCD)光谱。pH 6.9的天然过氧化氢酶MCD显示出在吸收光谱中未分辨出的几个额外跃迁。虽然除氰化物外,在所有衍生物的光谱中都能看到这些谱带,但它们的相对强度在不同配合物之间有很大变化。铁血红素的MCD中特别令人感兴趣的是约400纳米和620纳米处的信号强度。数据表明,随着高自旋铁卟啉部分增加,620纳米处的MCD强度增加,在氟化物配合物中达到最大值。随着低自旋铁比例增加,430纳米谱带强度增加,在氰化物配合物中达到最大值。MCD光谱还清楚地表明,在与CNO⁻、CNS⁻和N₃⁻形成的配合物中存在自旋混合物,其中430纳米和620纳米谱带都有可观的强度。值得注意的是,尽管吸收光谱几乎相同,但CNS⁻配合物的低自旋铁比例高于CNO⁻或N₃⁻物种。天然过氧化氢酶在pH 5和6.9时的MCD光谱之间的差异表明,血红素中心的环境对质子化敏感。