Okajima F, Tomura H, Sho K, Akbar M, Majid M A, Kondo Y
Department of Physical Biochemistry, Gunma University, Maebashi, Japan.
Biochem J. 1995 Mar 15;306 ( Pt 3)(Pt 3):709-15. doi: 10.1042/bj3060709.
COS-7 cells were transiently transfected with human thyrotropin receptor (TSHR) and dog A1 adenosine receptor (A1R) cDNA. TSH stimulated both inositol phosphate production and cyclic AMP (cAMP) accumulation in the cells. An A1 agonist, N6-(L-2-phenylisopropyl)adenosine (PIA), which is ineffective alone, significantly enhanced TSH-induced inositol phosphate production, but insignificantly inhibited TSH-induced cAMP accumulation was revealed by short-term treatment with the protein kinase C inhibitors, staurosporine and K252a, or long-term treatment with 12-myristate 13-acetate, suggesting that endogenous protein kinase C inhibits the A1R-mediated inhibition of the TSHR-adenylate cyclase system. In staurosporine-treated cells, the stimulatory and inhibitory permissive actions of PIA on TSH-induced phospholipase C and adenylate cyclase activation respectively were completely reversed by pretreatment with pertussis toxin whereas intrinsic TSH-induced effects were hardly affected by the toxin. The cross-talk between the signalling pathway for TSHR and that for A1R was not detected in a mixture of cells expressing either TSHR or A1R. We conclude that a single species of A1R, via pertussis-toxin-sensitive GTP-binding proteins, not only inhibits adenylate cyclase but also stimulates phospholipase C in collaboration with an activated TSHR within a single cell expressing both types of receptor.
将人促甲状腺激素受体(TSHR)和犬A1腺苷受体(A1R)cDNA瞬时转染至COS-7细胞。促甲状腺激素刺激细胞中肌醇磷酸的产生和环磷酸腺苷(cAMP)的积累。单独无效的A1激动剂N6-(L-2-苯异丙基)腺苷(PIA)显著增强促甲状腺激素诱导的肌醇磷酸产生,但对促甲状腺激素诱导的cAMP积累的抑制作用不显著。用蛋白激酶C抑制剂星形孢菌素和K252a短期处理或用12-肉豆蔻酸13-乙酸酯长期处理后发现,内源性蛋白激酶C抑制A1R介导的对TSHR-腺苷酸环化酶系统的抑制作用。在经星形孢菌素处理的细胞中,PIA对促甲状腺激素诱导的磷脂酶C和腺苷酸环化酶激活的刺激和抑制允许作用分别被百日咳毒素预处理完全逆转,而促甲状腺激素诱导的内在效应几乎不受该毒素影响。在表达TSHR或A1R的细胞混合物中未检测到TSHR信号通路与A1R信号通路之间的相互作用。我们得出结论,单一类型的A1R通过百日咳毒素敏感的GTP结合蛋白,不仅在同时表达两种受体的单个细胞内抑制腺苷酸环化酶,还与活化的TSHR协同刺激磷脂酶C。