Wong Y H, Demoliou-Mason C D, Barnard E A
MRC Molecular Neurobiology Unit, Medical Research Council Centre, Cambridge, England.
J Neurochem. 1989 Apr;52(4):999-1009. doi: 10.1111/j.1471-4159.1989.tb01840.x.
Opioid receptors solubilized in Mg2+-digitonin (2%, wt/vol) from Mg2+-pretreated rat brain membranes maintain, in addition to high-affinity opioid agonist binding, the modulation by guanine nucleotides. One of the modes of expression of the latter property is an attenuation of agonist binding by guanine nucleotides in the presence of Na+. To investigate the molecular basis of this modulation and to identify the G protein(s) involved, the soluble receptors were [32P]ADP-ribosylated by means of Bordetella pertussis toxin and subjected to molecular size exclusion chromatography. In addition, soluble extracts were chromatographed on lectin and hydrophobic affinity columns. The binding of 35S- and 3H-labelled analogues of GTP was also monitored in the species separated. The oligomeric G protein-coupled opioid receptors and the guanine nucleotide/pertussis toxin-sensitive species showed similar chromatographic properties in all three systems. This indicates that the biochemically functional G protein-opioid receptor complex formed in Mg2+-pretreated membranes in the absence of an agonist is stable in digitonin solution and to chromatographic separation. Further analysis showed that the guanine nucleotide modulation of opioid receptors is via the pertussis toxin substrates with Mr of 41,000 and 39,000, which are identified as Gi and Go alpha subunits, respectively.
从经Mg2+预处理的大鼠脑膜中用Mg2+-洋地黄皂苷(2%,重量/体积)溶解的阿片受体,除了具有高亲和力的阿片激动剂结合能力外,还保留了鸟嘌呤核苷酸的调节作用。后一种特性的表达模式之一是在Na+存在的情况下,鸟嘌呤核苷酸对激动剂结合的减弱。为了研究这种调节的分子基础并确定所涉及的G蛋白,可溶性受体用百日咳博德特氏菌毒素进行[32P]ADP-核糖基化,并进行分子大小排阻色谱分析。此外,可溶性提取物在凝集素和疏水亲和柱上进行色谱分析。还监测了在分离的组分中35S和3H标记的GTP类似物的结合情况。寡聚G蛋白偶联阿片受体和对鸟嘌呤核苷酸/百日咳毒素敏感的组分在所有三个系统中都表现出相似的色谱特性。这表明在没有激动剂的情况下,在经Mg2+预处理的膜中形成的具有生化功能的G蛋白-阿片受体复合物在洋地黄皂苷溶液中以及在色谱分离中是稳定的。进一步分析表明,阿片受体的鸟嘌呤核苷酸调节是通过分子量分别为41,000和39,000的百日咳毒素底物进行的,它们分别被鉴定为Gi和Goα亚基。