Gotti C, Hanke W, Maury K, Moretti M, Ballivet M, Clementi F, Bertrand D
Department of Medical Pharmacology, University of Milan, Italy.
Eur J Neurosci. 1994 Aug 1;6(8):1281-91. doi: 10.1111/j.1460-9568.1994.tb00318.x.
Two chick optic lobe alpha-bungarotoxin receptor subtypes (alpha 7 and alpha 7-alpha 8) were immunopurified using polyclonal antibodies raised against synthetic peptides of chick alpha 7 and alpha 8 alpha-bungarotoxin receptor subunits. The alpha 7 subtype contained the M(r) 57,000 alpha 7 subunit, and represented 60-70% of the alpha-bungarotoxin receptors; the alpha 7-alpha 8 subtype contained the M(r) 57,000 alpha 7 and alpha 8 subunits, and represented only 20-25% of the receptors. Both subtypes also had an additional M(r) 52,000 subunit. The affinity of these subtypes for alpha-bungarotoxin as well as antagonists was similar. However, the alpha 7-alpha 8 subtype displayed consistently higher affinities for agonists. When reconstituted in planar lipid bilayers, the alpha 7-alpha 8 subtype displayed several conductance states of 10-50 pS; the alpha 7 subtype had only one conductance state of 45 pS. The alpha 7-alpha 8 subtype was activated by lower agonist concentrations than the alpha 7 subtype. When expressed in Xenopus oocytes, the alpha 8 subunit formed functional homomeric receptors that desensitized rapidly. These channels were blocked by alpha-bungarotoxin and displayed a higher affinity for agonists than the alpha 7 homomeric receptor. Taken together, these data indicate that at least two alpha-bungarotoxin subtypes are present in the chick optic lobe. They operate as ligand-gated channels and display different agonist sensitivities and kinetics/conductance properties.
利用针对鸡α7和α8α-银环蛇毒素受体亚基合成肽产生的多克隆抗体,对两种鸡视叶α-银环蛇毒素受体亚型(α7和α7-α8)进行了免疫纯化。α7亚型包含分子量为57,000的α7亚基,占α-银环蛇毒素受体的60-70%;α7-α8亚型包含分子量为57,000的α7和α8亚基,仅占受体的20-25%。两种亚型还都有一个额外的分子量为52,000的亚基。这些亚型对α-银环蛇毒素以及拮抗剂的亲和力相似。然而,α7-α8亚型对激动剂的亲和力始终较高。当重构于平面脂质双分子层中时,α7-α8亚型呈现出10-50 pS的几种电导状态;α7亚型只有一种45 pS的电导状态。α7-α8亚型比α7亚型被更低浓度的激动剂激活。当在非洲爪蟾卵母细胞中表达时,α8亚基形成了快速脱敏的功能性同聚体受体。这些通道被α-银环蛇毒素阻断,并且对激动剂的亲和力高于α7同聚体受体。综上所述,这些数据表明鸡视叶中至少存在两种α-银环蛇毒素亚型。它们作为配体门控通道发挥作用,并表现出不同的激动剂敏感性以及动力学/电导特性。