Horie T, Maniara G, Vanderkooi J M
FEBS Lett. 1984 Nov 19;177(2):287-90. doi: 10.1016/0014-5793(84)81301-0.
The decay rate of the excited triplet state of Zn cytochrome c was enhanced by electron acceptors including methyl viologen and ferric complexes of cyanide, oxalate, EDTA and cytochrome c at room temperature. Ferrous compounds were several orders of magnitude less effective than the respective ferric form in quenching the phosphorescence. In the presence of ferricytochrome c and ferricyanide the semilogarithmic plots of the decay curve showed an anomalous decay profile in which the rate of interaction appeared to accelerate after excitation. One explanation is that the quenching process was accelerated by a conformational change of the polypeptide chain around the excited triplet state porphyrin. Another explanation is that quenching occurs via an intermediate.
在室温下,包括甲基紫精以及氰化物、草酸盐、乙二胺四乙酸(EDTA)和细胞色素c的铁络合物在内的电子受体增强了锌细胞色素c激发三重态的衰减速率。亚铁化合物在淬灭磷光方面的效果比相应的铁化合物低几个数量级。在高铁细胞色素c和铁氰化物存在的情况下,衰减曲线的半对数图显示出异常的衰减曲线,其中相互作用速率在激发后似乎加快。一种解释是,淬灭过程因激发三重态卟啉周围多肽链的构象变化而加速。另一种解释是,淬灭通过中间体发生。