首页> 美国卫生研究院文献>The EMBO Journal >High affinity binding of alpha-bungarotoxin to the purified alpha-subunit and to its 27000-dalton proteolytic peptide from Torpedo marmorata acetylcholine receptor. Requirement for sodium dodecyl sulfate.
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High affinity binding of alpha-bungarotoxin to the purified alpha-subunit and to its 27000-dalton proteolytic peptide from Torpedo marmorata acetylcholine receptor. Requirement for sodium dodecyl sulfate.

机译:α-真菌毒素与纯化的α-亚基及其27000道尔顿蛋白水解肽的高亲和力结合其来自于Torpedo marmorata乙酰胆碱受体。对十二烷基硫酸钠的要求。

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摘要

Intact nicotinic acetylcholine receptor (AChR) tightly binds alpha-bungarotoxin. The two toxin-binding sites are presumed to be on the two alpha-subunits, either on or near the ACh-binding sites. Isolated alpha-subunits have been found to maintain weak binding to alpha-bungarotoxin (KD approximately 0.2 microM). We describe here conditions under which the alpha-subunit and a 27,000-dalton proteolytic peptide bound alpha-bungarotoxin with high affinity. The four subunits of Torpedo marmorata AChR, as well as several proteolytic peptides of the alpha-subunit, were first purified by sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis. We found that the purified alpha-subunit (but not the beta-, gamma- or delta-subunits) and its 27,000-dalton peptide specifically bound 125I-labeled alpha-bungarotoxin with KD approximately 3 and 6 nM, i.e., about two orders of magnitude lower than the intact AChR. Nearly 100% of the sites were recovered. The recovery of this high affinity binding required the presence of SDS (approximately 0.02%) but non-denaturing detergents had a strongly inhibitory effect. Unlabeled alpha-toxins competed with labeled alpha-bungarotoxin, alpha-bungarotoxin being more effective than all the other toxins tested. Decamethonium and hexamethonium competed efficiently with alpha-bungarotoxin binding but carbamylcholine had only a weak effect. The main immunogenic region of the AChR was only partially preserved since conformation-dependent monoclonal antibodies to this region bound the alpha subunit-toxin complexes, but much less efficiently than the intact AChR. We conclude that SDS can be advantageous to the recovery of high toxin binding to the alpha subunit which still has not completely recovered its native conformation.
机译:完整的烟碱乙酰胆碱受体(AChR)紧密结合α-真菌毒素。推定两个毒素结合位点位于ACh结合位点上或附近的两个α亚基上。已经发现分离的α-亚基保持与α-真菌毒素的弱结合(KD约为0.2 microM)。我们在这里描述的条件下,α-亚基和27,000-道尔顿的蛋白水解肽以高亲和力结合α-真菌毒素。首先通过十二烷基硫酸钠(SDS)-聚丙烯酰胺凝胶电泳纯化鱼雷鱼腥藻AChR的四个亚基以及几个α亚基的蛋白水解肽。我们发现,纯化的α-亚基(但不是β-,γ-或δ-亚基)及其27,000-道尔顿肽特异性结合125I标记的α-真菌毒素,其KD约为3和6 nM,即约两个数量级。幅度低于完整的AChR。将近100%的地点被回收。要恢复这种高亲和力结合,需要存在SDS(约0.02%),但非变性去污剂具有很强的抑制作用。未标记的α-毒素与标记的α-真菌毒素竞争,α-真菌毒素比所有其他测试毒素更有效。癸草铵和六甲铵可以有效地与α-真菌毒素结合,而氨基甲酰胆碱的作用较弱。 AChR的主要免疫原性区域仅被部分保留,因为对该区域的构象依赖性单克隆抗体结合了α亚基-毒素复合物,但效率却比完整的AChR低得多。我们得出的结论是,SDS可以有利于回收与α亚基结合的高毒素,而该亚基仍未完全恢复其天然构象。

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