Hucho F, Layer P, Kiefer H R, Bandini G
Proc Natl Acad Sci U S A. 1976 Aug;73(8):2624-8. doi: 10.1073/pnas.73.8.2624.
Membrane fragments from electric tissue of Torpedo californica containing nicotinic acetylcholine receptor are composed of four different polypeptide chains with molecular weights of 40,000 (alpha), 48,000 (beta), 62,000 (gamma), and 66,000 (delta). The alpha and beta chains are still present in all and gamma and delta in some of the receptor preparations after Triton X-100 extraction and purification by affinity chromatography. All components of the receptor react covalently with the photoaffinity label 4-azido-2-nitrobenzyltrimethylammonium fluoroborate, the delta chain incorporating less of the reagent as compared to the alpha and beta chains. Agonists and antagonists containing a quaternary ammonium group protect all chains against the label; the principal neurotoxin from Naja naja siamensis protects the alpha chain only. We conclude that the alpha chain binds the neurotoxin from Naja naja, the alpha and beta chains are involved in the binding of ligands with quaternary ammonium groups, and the function of the gamma and delta chains remains to be determined.
来自加州电鳐电组织的含有烟碱型乙酰胆碱受体的膜片段由四种不同的多肽链组成,其分子量分别为40,000(α)、48,000(β)、62,000(γ)和66,000(δ)。在用Triton X - 100提取并通过亲和层析纯化后,所有受体制剂中仍存在α链和β链,而γ链和δ链在部分制剂中存在。受体的所有组分都能与光亲和标记物4 - 叠氮基 - 2 - 硝基苄基三甲基铵氟硼酸盐发生共价反应,与α链和β链相比,δ链结合的该试剂较少。含有季铵基团的激动剂和拮抗剂能保护所有链免受标记;来自眼镜蛇的主要神经毒素仅保护α链。我们得出结论,α链结合眼镜蛇的神经毒素,α链和β链参与与季铵基团配体的结合,而γ链和δ链的功能尚待确定。