Vanderkooi J M, Landesberg R, Hayden G W, Owen C S
Eur J Biochem. 1977 Dec 1;81(2):339-47. doi: 10.1111/j.1432-1033.1977.tb11957.x.
The luminescent properties of metal-free, tin(IV) and zinc(II) cytochromes c have been used to characterize the interaction of cytochrome c with mitochondria and cytochrome oxidase. Diminution in the fluorescence yields of tin and zinc cytochrome c occur when these derivates bind to cytochrome oxidase or mitochondria. Based upon spectral overlap and quantum yield, the distance between the porphyrin rings of cytochrome a and cytochrome c is estimated according to Forster theory to be in the neighborhood of 3.5 nm. Measurements of the polarized emission of metal-free 'porphyrin' cytochrome c when bound to oriented layers of cytochrome c oxidase indicate that the porphyrin is bound obliquely to the plane of the oxidase layers with an angle of about 70 degrees C from heme plane to membrane plane. It is proposed that these data have significance for elucidation of electron transfer mechanisms.
无金属、锡(IV)和锌(II)细胞色素c的发光特性已被用于表征细胞色素c与线粒体和细胞色素氧化酶的相互作用。当这些衍生物与细胞色素氧化酶或线粒体结合时,锡和锌细胞色素c的荧光产率会降低。根据光谱重叠和量子产率,根据福斯特理论估计细胞色素a和细胞色素c的卟啉环之间的距离约为3.5纳米。当与细胞色素c氧化酶的定向层结合时,对无金属“卟啉”细胞色素c的偏振发射测量表明,卟啉以与氧化酶层平面倾斜的方式结合,从血红素平面到膜平面的角度约为70摄氏度。有人提出,这些数据对阐明电子转移机制具有重要意义。