Yu X M, Hall Z W
Department of Physiology, University of California, San Francisco 94143.
Mol Pharmacol. 1994 Nov;46(5):964-9.
We have used transient expression in COS cells of the subunits of the nicotinic acetylcholine receptor (AChR) from mouse skeletal muscle to investigate the role of transmembrane and cytoplasmic domains of the delta subunit in assembly of the AChR. When chimeric subunits whose extracellular amino- and carboxyl-terminal domains were from the delta subunit and whose transmembrane and cytoplasmic domains were from either the beta, gamma, or epsilon subunit were expressed with alpha, beta, and epsilon subunits, alpha-bungarotoxin-binding activity appeared on the surface of the transfected cells. The resulting receptor complexes each had sedimentation constants resembling those of the native AChR, consistent with a pentameric structure. Further investigation of the delta beta chimeric subunit showed that it formed a heterodimer with the alpha subunit and that the resulting subunit bound d-tubocurarine with an affinity similar to that of the alpha delta heterodimer; delta beta also formed a heterodimer with a form of the alpha subunit that is truncated after the first transmembrane domain. A heterodimer formed from the epsilon beta and alpha subunits also bound d-tubocurarine with an affinity similar to that of the alpha epsilon heterodimer. When both epsilon beta and delta beta subunits were substituted for the epsilon and delta subunits, respectively, a receptor complex was formed whose structure appeared to be alpha 2 beta(epsilon beta)(delta beta). These results show that, as with the epsilon subunit, the identity of the delta subunit in AChR assembly arises from the extracytoplasmic domains of the subunit.
我们利用小鼠骨骼肌烟碱型乙酰胆碱受体(AChR)亚基在COS细胞中的瞬时表达,来研究δ亚基的跨膜结构域和胞质结构域在AChR组装中的作用。当胞外氨基端和羧基端结构域来自δ亚基、跨膜结构域和胞质结构域来自β、γ或ε亚基的嵌合亚基与α、β和ε亚基一起表达时,α-银环蛇毒素结合活性出现在转染细胞表面。所产生的受体复合物各自的沉降常数类似于天然AChR的沉降常数,这与五聚体结构一致。对δβ嵌合亚基的进一步研究表明,它与α亚基形成异二聚体,并且所产生的亚基与筒箭毒碱结合的亲和力类似于αδ异二聚体;δβ也与在第一个跨膜结构域之后被截短的α亚基形式形成异二聚体。由εβ和α亚基形成的异二聚体与筒箭毒碱结合的亲和力也类似于αε异二聚体。当分别用εβ和δβ亚基替代ε和δ亚基时,形成了一种受体复合物,其结构似乎是α2β(εβ)(δβ)。这些结果表明,与ε亚基一样,AChR组装中δ亚基的特性源于该亚基的胞外结构域。