Hildebrandt P, Stockburger M
Max-Planck-Institut für Biophysikalische Chemie, Abteilung Spektroskopie, Göttingen, FRG.
Biochemistry. 1989 Aug 8;28(16):6722-8. doi: 10.1021/bi00442a027.
We have analyzed the structure of cytochrome c (cyt c) bound in a variety of complexes in which negatively charged molecular groups interact with the positively charged binding domain around the heme crevice of cyt c. Using resonance Raman spectroscopy, we could demonstrate that these interactions induce the same conformational changes as they were observed in the surface-enhanced resonance Raman experiments of cyt c adsorbed on the Ag electrode [Hildebrandt & Stockburger (1989) Biochemistry (preceding paper in this issue)]. When cyt c is bound to (As4W40O140)27-, state II is stabilized, whereas in complexes with phosvitin and cytochrome b5 state I is formed. The complexes with phospholipid vesicles and inverted micelles reveal a mixture of both states. It is suggested that these systems as well as cyt c adsorbed on the Ag electrode may be regarded as model systems for the physiological complexes of cyt c with cytochrome oxidase and cytochrome reductase. On the basis of our findings it is proposed that the biological electron-transfer reactions are controlled by electric field induced conformational transitions of cyt c upon complex formation with its physiological redox partners.
我们分析了细胞色素c(cyt c)在多种复合物中的结合结构,其中带负电荷的分子基团与cyt c血红素裂隙周围带正电荷的结合域相互作用。利用共振拉曼光谱,我们能够证明这些相互作用诱导的构象变化与在吸附于银电极上的cyt c的表面增强共振拉曼实验中观察到的相同[希尔德布兰特和施托克伯格(1989年)《生物化学》(本期前一篇论文)]。当cyt c与(As4W40O140)27-结合时,II型得到稳定,而在与卵黄高磷蛋白和细胞色素b5的复合物中形成I型。与磷脂囊泡和反相胶束的复合物显示出两种状态的混合。有人认为,这些系统以及吸附在银电极上的cyt c可被视为cyt c与细胞色素氧化酶和细胞色素还原酶生理复合物的模型系统。基于我们的发现,有人提出生物电子转移反应是由cyt c与其生理氧化还原伙伴形成复合物时电场诱导的构象转变所控制的。