Ramírez J, Calahorra M, Peña A
Anal Biochem. 1987 May 15;163(1):100-6. doi: 10.1016/0003-2697(87)90098-4.
A method for the rapid incorporation of cytochrome c oxidase into membranes has been developed. This method essentially consists of obtaining a preparation of the enzyme in which it is isolated and then dissolving it in a medium containing 0.5% of the detergent Tween 20, which gives a final concentration of 0.0125% after reconstitution. These studies revealed an optimal ratio of 1 microgram of enzyme to 5 mg of phospholipids. A similar optimal ratio was found when the amount of protein was varied. The optimum temperature was found to be 30 degrees C. Without a peak value being reached, it was found that the best reconstitution was obtained at pH 7.0-8.0. When measurements were performed either with a fluorescent cyanine (DiSC3) or by the uptake of tetraphenylphosphonium, it was found that the enzyme, with cytochrome c added to the outside, was capable of generating a membrane potential that was negative inside. Using the same procedure, the enzyme could also be reconstituted into vesicles of yeast plasma membrane. The procedure, then, seems adequate for incorporating cytochrome c oxidase into different kinds of membrane vesicles.
已开发出一种将细胞色素c氧化酶快速整合到膜中的方法。该方法主要包括制备一种分离出的酶制剂,然后将其溶解在含有0.5%去污剂吐温20的介质中,重构后最终浓度为0.0125%。这些研究揭示了每1微克酶与5毫克磷脂的最佳比例。当蛋白质含量变化时,也发现了类似的最佳比例。发现最佳温度为30℃。在未达到峰值的情况下,发现在pH 7.0 - 8.0时重构效果最佳。当用荧光花青(DiSC3)或通过四苯基鏻的摄取进行测量时,发现加入细胞色素c到外部的酶能够产生内部为负的膜电位。使用相同的程序,该酶也可以重构到酵母质膜小泡中。因此,该程序似乎足以将细胞色素c氧化酶整合到不同类型的膜小泡中。