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在磷脂囊泡中重组纯乙酰胆碱受体,并通过使用电位染料与富含受体的膜进行比较。

Reconstitution of pure acetylcholine receptor in phospholipid vesicles and comparison with receptor-rich membranes by the use of a potentiometric dye.

作者信息

Lüdi H, Oetliker H, Brodbeck U, Ott P, Schwendimann B, Fulpius B W

出版信息

J Membr Biol. 1983;74(2):75-84. doi: 10.1007/BF01870496.

Abstract

Acetylcholine receptor, isolated in Triton X-100 on a cobra alpha-neurotoxin affinity column was incorporated into unilamellar phospholipid vesicles by a detergent depletion method using Amberlite XAD-2. Vesicles of an average diameter of 25 nm were formed, as verified by freeze-fracture electron microscopy and gel filtration. 85 to 95% of the alpha-bungarotoxin binding sites of the reconstituted acetylcholine receptor were oriented towards the outside of the vesicles. In the reconstituted receptor one molecule of residual Triton X-100 per 2.5 alpha-bungarotoxin binding sites on the receptor molecule could be assessed. The reconstituted protein was not accessible to papain digestion, whereas the pure acetylcholine receptor, solubilized by Triton X-100 was split into smaller polypeptides under the same condition. Reconstituted acetylcholine receptor and receptor-rich membranes did not exhibit the same behavior as measured by use of a potentiometric dye. This is interpreted as an irreversible alteration of at least 95% of the receptors purified in the presence of Triton X-100. Furthermore, it could be shown that the fluorescence intensity changes induced by carbamylcholine in receptor-rich membranes did not reflect ion fluxes, but conformational changes of the protein or a displacement of the dye from the protein.

摘要

通过使用Amberlite XAD - 2的去污剂耗尽法,将在眼镜蛇α-神经毒素亲和柱上用Triton X - 100分离得到的乙酰胆碱受体掺入单层磷脂囊泡中。通过冷冻断裂电子显微镜和凝胶过滤证实,形成了平均直径为25 nm的囊泡。重构的乙酰胆碱受体中85%至95%的α-银环蛇毒素结合位点朝向囊泡外部。在重构的受体中,每2.5个受体分子上的α-银环蛇毒素结合位点可评估到一分子残留的Triton X - 100。重构的蛋白质不能被木瓜蛋白酶消化,而用Triton X - 100溶解的纯乙酰胆碱受体在相同条件下会被分解成较小的多肽。通过使用电位染料测量,重构的乙酰胆碱受体和富含受体的膜表现出不同的行为。这被解释为在Triton X - 100存在下纯化的至少95%的受体发生了不可逆改变。此外,可以证明,富含受体的膜中由氨甲酰胆碱诱导的荧光强度变化并不反映离子通量,而是蛋白质的构象变化或染料从蛋白质上的位移。

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