Moore A L, Linnett P E, Beechey R B
J Bioenerg Biomembr. 1980 Aug;12(3-4):309-23. doi: 10.1007/BF00744691.
Dibutylchloromethyl tin chloride (DBCT) inhibits coupled and uncoupled respiration of mitochondria from potato tubers, cauliflower florets and etiolated mung bean hypocotyls with succinate and L-malate but not with external NADH or TMPD/ascorbate as substrates. Using potato and cauliflower mitochondria. DBCT at 200 pmole/mg of protein gives complete inhibition only in KCl-based media and at pH 6.8. DBCT has no effect on the internal pH of mung bean mitochondria, but does cause a decrease in the membrane potential. Electron transport through the alternative oxidase is not inhibited, neither is the ATP-synthase system. DBCT appears to interact with the functionally-distinct pool of ubiquinone associated with the oxidation of succinate and L-malate.
二丁基氯甲基氯化锡(DBCT)抑制马铃薯块茎、花椰菜小花和黄化绿豆下胚轴线粒体以琥珀酸和L-苹果酸为底物时的偶联呼吸和非偶联呼吸,但以外部NADH或TMPD/抗坏血酸为底物时则无此作用。使用马铃薯和花椰菜线粒体时,200皮摩尔/毫克蛋白质的DBCT仅在基于KCl的培养基中且pH值为6.8时产生完全抑制作用。DBCT对绿豆线粒体的内部pH值没有影响,但会导致膜电位降低。通过交替氧化酶的电子传递未受抑制,ATP合酶系统也未受抑制。DBCT似乎与与琥珀酸和L-苹果酸氧化相关的功能不同的泛醌池相互作用。