Ellfolk N, Sievers G
Biochim Biophys Acta. 1975 Oct 20;405(2):213-27. doi: 10.1016/0005-2795(75)90088-4.
Circular dichroic (CD) spectra of soybean leghemoglobin, and some of its liganded derivatives were measured over the wavelength range of 650 to 200 nm. The heme-related circular dichroic bands in the visible, Soret and ultraviolet wavelength regions exhibit Cotton effects characteristic of each of the compounds examined. The positions of the dichroic bands vary with ligand substitutions and the oxidation state of the iron. All leghemoglobin derivatives, except the apoprotein, exhibit negative circular dichroic bands in the region of Soret absorption. In this region the optical activity of compounds with high-spin moments is greater than that of compounds with low or intermediate spin moments. The ellipticity of the heme band at about 260 nm is also altered by ligand binding and spin state. The dichroic spectra in the far-ultraviolet region indicated a high extent of alpha-helical structure (about 70%) in the native leghemoglobin and its liganded derivatives. The helicality of the apoprotein seems to diminish suggesting a decrease caused by the removal of the heme.
在650至200纳米波长范围内测量了大豆豆血红蛋白及其一些配位衍生物的圆二色(CD)光谱。在可见光、索雷特带和紫外波长区域中,与血红素相关的圆二色带呈现出所检测的每种化合物特有的科顿效应。二色带的位置随配体取代和铁的氧化态而变化。除脱辅基蛋白外,所有豆血红蛋白衍生物在索雷特吸收区域均呈现负圆二色带。在该区域,具有高自旋矩的化合物的光学活性大于具有低或中等自旋矩的化合物。配体结合和自旋状态也会改变约260纳米处血红素带的椭圆率。远紫外区域的二色光谱表明,天然豆血红蛋白及其配位衍生物具有高度的α-螺旋结构(约70%)。脱辅基蛋白的螺旋度似乎降低,表明血红素去除导致了这种降低。