Carlin B E, Lawrence J C, Lindstrom J M, Merlie J P
Proc Natl Acad Sci U S A. 1986 Jan;83(2):498-502. doi: 10.1073/pnas.83.2.498.
We have identified an intracellular form of the alpha subunit of the acetylcholine receptor that binds alpha-bungarotoxin with high affinity. Unlike the mature receptor complex, an alpha 2 beta gamma delta pentamer that migrates as a 9S species in velocity sedimentation analysis, the intracellular species moves as a 5S component. The kinetics of appearance of alpha subunit in the 5S component and the mature receptor complex indicate that the intracellular 5S component is a precursor of the mature receptor. The precursor species differs from 9S receptor in two critical features: (i) the precursor alpha subunit is not associated with beta subunit and (ii) alpha-bungarotoxin binding to the precursor alpha subunit is not inhibited by the cholinergic ligands decamethonium or d-tubocurarine. The properties of the precursor suggest that the acquisition of the ligand binding site by alpha subunit occurs at a distinct stage in the posttranslational development of functional acetylcholine receptor.
我们已经鉴定出一种乙酰胆碱受体α亚基的细胞内形式,它能以高亲和力结合α-银环蛇毒素。与成熟的受体复合物不同,成熟受体复合物是一种α2βγδ五聚体,在速度沉降分析中以9S形式迁移,而细胞内形式则以5S成分迁移。5S成分和成熟受体复合物中α亚基出现的动力学表明,细胞内5S成分是成熟受体的前体。前体物种在两个关键特征上与9S受体不同:(i)前体α亚基不与β亚基相关联;(ii)胆碱能配体十烃季铵或d-筒箭毒碱不会抑制α-银环蛇毒素与前体α亚基的结合。前体的特性表明,α亚基配体结合位点的获得发生在功能性乙酰胆碱受体翻译后发育的一个独特阶段。