Osheroff N, Feinberg B A, Margoliash E, Morrison M
J Biol Chem. 1977 Nov 10;252(21):7743-51.
Iodination of horse cytochrome c with the lactoperoxidase-hydrogen peroxide-iodide system results initially in the formation of the monoiodotyrosyl 74 derivative. This singly modified protein was obtained in pure form by ion exchange chromatography and preparative column electrophoresis. It shows an intact 695 nm absorption band, the midpoint potential of the native protein, a nuclear magnetic resonance spectrum which indicates an undisturbed heme crevice structure, a normal reaction with antibodies directed against native horse cytochrome c, and circular dichroic spectra in which the only changes from those of the native protein can be ascribed to the spectral properties of iodotyrosine itself. This conformationally intact derivative reacts with the succinate-cytochrome c reductase and the cytochrome c oxidase systems of beef mitochondrial particle preparations indistinguishably from the unmodified protein, showing that the region including tyrosine 74 is not involved in these enzymic electron transfer functions of the protein. The circular dichroic spectra of this derivative indicate that the minima observed at 288 and 282 nm in the spectrum of native ferricytochrome c originate from tyrosyl residue 74.
用乳过氧化物酶-过氧化氢-碘化物体系对马细胞色素c进行碘化,最初会形成单碘酪氨酰74衍生物。通过离子交换色谱法和制备柱电泳法可获得这种单一修饰的纯蛋白。它显示出完整的695nm吸收带、天然蛋白的中点电位、核磁共振谱表明血红素裂隙结构未受干扰、与针对天然马细胞色素c的抗体有正常反应,以及圆二色光谱,其中与天然蛋白光谱的唯一变化可归因于碘酪氨酸本身的光谱特性。这种构象完整的衍生物与牛肉线粒体颗粒制剂的琥珀酸-细胞色素c还原酶和细胞色素c氧化酶系统反应,与未修饰的蛋白没有区别,表明包括酪氨酸74的区域不参与该蛋白的这些酶促电子传递功能。该衍生物的圆二色光谱表明,天然高铁细胞色素c光谱中在288和282nm处观察到的最小值源自酪氨酰残基74。