Tu S I, Lam E, Ramirez F, Marecek J F
Eur J Biochem. 1981 Jan;113(2):391-6. doi: 10.1111/j.1432-1033.1981.tb05078.x.
The mechanism by which proton extrusion is linked to electron transfer in mitochondria was investigated by means of the primary amine-specific reagent fluorescamine, and of compounds obtained from the reaction of fluorescamine with simple amines (e.g. benzylamine) and with the mycosamine-containing antibiotic amphotericin B. The effect of these 'modifiers' (i.e. fluorescamine transfer chain were assayed separately using specific inhibitors to block the action associated with the other site. Both types of modifiers inhibited the proton extrusion across the membrane to a significantly greater extent than the electron transfer process in both sites II and III. In contrast, the lactone derivative (or cyclic form) of the amine-fluorescamine compounds had no significant inhibitory effect on the proton extrusion and its associated electron transfer. These results are consistent with the hypothesis that the link between proton extrusion and electron transfer in mitochondria is indirect in nature. The results show that: (a) the links involved in sites II and III are identical or very similar in nature; (b) a covalent modification of primary amino groups in the inner membrane is not essential for the expression of these differential inhibitory effects; (c) specific structural features in the amine-fluorescamine compounds, and in the mitochondria-fluorescamine derivatives, are crucial for the expression of the inhibitory effects. Our results contradict the 'redox loop' model of Mitchell, and are compatible with the proton pump concept for the linked proton translocation in oxidative phosphorylation.
利用伯胺特异性试剂荧光胺以及荧光胺与简单胺(如苄胺)和含霉菌胺的抗生素两性霉素B反应所得的化合物,研究了线粒体中质子外排与电子传递相联系的机制。分别使用特异性抑制剂来阻断与另一个位点相关的作用,从而对这些“修饰剂”(即荧光胺)对电子传递链的影响进行了测定。在II和III位点,这两类修饰剂对跨膜质子外排的抑制作用比对电子传递过程的抑制作用明显更强。相比之下,胺 - 荧光胺化合物的内酯衍生物(或环状形式)对质子外排及其相关的电子传递没有显著的抑制作用。这些结果与线粒体中质子外排与电子传递之间的联系本质上是间接的这一假设一致。结果表明:(a)II和III位点所涉及的联系在本质上是相同的或非常相似的;(b)内膜中伯氨基的共价修饰对于这些差异抑制作用的表达并非必不可少;(c)胺 - 荧光胺化合物以及线粒体 - 荧光胺衍生物中的特定结构特征对于抑制作用的表达至关重要。我们的结果与米切尔的“氧化还原环”模型相矛盾,并且与氧化磷酸化中相关质子转运的质子泵概念相符。