Rasenick M M, Childers S R
Department of Physiology, University of Illinois College of Medicine, Chicago 60680-6998.
J Neurochem. 1989 Jul;53(1):219-25. doi: 10.1111/j.1471-4159.1989.tb07317.x.
Pretreatment of rat brain membranes at pH 4.5 before assay at pH 7.4 modifies the function of GTP-binding proteins (G-proteins) by eliminating Gs-stimulated adenylate cyclase activity while increasing opiate-inhibited adenylate cyclase activity. To help characterize the molecular nature of the low pH effect, we labeled Gs and Gi alpha-subunits in both control and low pH-pretreated membranes with the GTP photoaffinity analog [32P]P3 (4-azidoanilido)-P1-5'-GTP ([32P]AAGTP). When membranes were preincubated with unlabeled AAGTP, a persistent inhibitory state of adenylate cyclase was produced, which was overcome in untreated membranes with high (greater than 1 microM) concentrations of guanylyl-5'-imidodiphosphate [Gpp(NH)p]. In low pH-pretreated membranes, this inhibition could not be overcome, and stimulation by Gpp(NH)p was eliminated. Maximal inhibition of adenylate cyclase achieved by incubation with AAGTP was not altered by low pH pretreatment. Incorporation of [32P]AAGTP into Gs (42 kilodaltons) or Gi/o (40 kilodaltons) was unaffected by low pH pretreatment; however, transfer of 32P from Gi/o to Gs, which occurs with low (10 nM) concentrations of Gpp(NH)p in untreated membranes, was severely retarded in low pH-pretreated membranes. Both the potency and efficacy of Gpp(NH)p in producing exchange of [32P]AAGTP from Gi/o to Gs were markedly reduced by low pH pretreatment. These results correlate the loss of Gs-stimulated adenylate cyclase with a loss of transfer of nucleotide from Gi/o to Gs alpha-subunits and suggest that the nucleotide exchange participates in the modulation of neuronal adenylate cyclase.
在pH 7.4进行测定之前,先在pH 4.5对大鼠脑膜进行预处理,可通过消除Gs刺激的腺苷酸环化酶活性,同时增加阿片类物质抑制的腺苷酸环化酶活性,来改变GTP结合蛋白(G蛋白)的功能。为了帮助阐明低pH效应的分子本质,我们用GTP光亲和类似物[32P]P3(4-叠氮苯胺基)-P1-5'-GTP([32P]AAGTP)标记对照和低pH预处理膜中的Gs和Giα亚基。当膜与未标记的AAGTP预孵育时,会产生腺苷酸环化酶的持续抑制状态,在未处理的膜中,高浓度(大于1 microM)的鸟苷-5'-亚氨二磷酸[Gpp(NH)p]可克服这种抑制。在低pH预处理的膜中,这种抑制无法被克服,并且Gpp(NH)p的刺激作用被消除。与AAGTP孵育所实现的腺苷酸环化酶的最大抑制不受低pH预处理的影响。[32P]AAGTP掺入Gs(42千道尔顿)或Gi/o(40千道尔顿)不受低pH预处理的影响;然而,在未处理的膜中,低浓度(10 nM)的Gpp(NH)p会使32P从Gi/o转移到Gs,而在低pH预处理的膜中,这种转移严重受阻。低pH预处理显著降低了Gpp(NH)p促进[32P]AAGTP从Gi/o交换到Gs的效力和效果。这些结果将Gs刺激的腺苷酸环化酶的丧失与核苷酸从Gi/o转移到Gsα亚基的丧失联系起来,并表明核苷酸交换参与了神经元腺苷酸环化酶的调节。