Wiedmer T, Brodbeck U, Zahler P, Fulpius B W
Biochim Biophys Acta. 1978 Jan 19;506(2):161-72. doi: 10.1016/0005-2736(78)90387-5.
The interaction of acetylcholine receptor and acetylcholinesterase with lipid monolayers was followed by measuring changes in surface pressure. When injected into the subphase of a lipid monolayer, the proteins caused increases in surface pressure from 5 to 10 dynes/cm, indicating a penetration of protein into the monolayer. At pH values below the isoelectric point of the proteins the incorporation was improved. The same was observed when Ca2+ (2mM) was added. The presence of the enzyme in the mixed film could be demonstrated by using diiso [3H] propyl fluorophosphate-labelled acetylcholinesterase as well as by measuring enzyme activity. Acetylcholine receptor was shown to be present in the mixed film by using a complex made of the receptor and alpha-[3H]neurotoxin.
通过测量表面压力的变化来跟踪乙酰胆碱受体和乙酰胆碱酯酶与脂质单分子层的相互作用。当将这些蛋白质注入脂质单分子层的亚相时,会导致表面压力从5达因/厘米增加到10达因/厘米,这表明蛋白质渗透到了单分子层中。在低于蛋白质等电点的pH值条件下,这种掺入得到了改善。当添加2毫摩尔的Ca2+时也观察到了同样的情况。通过使用二异[3H]丙基氟磷酸标记的乙酰胆碱酯酶以及测量酶活性,可以证明混合膜中存在该酶。通过使用由受体和α-[3H]神经毒素组成的复合物,表明混合膜中存在乙酰胆碱受体。