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Variable Dependence of Signaling Output on Agonist Occupancy of Ste2p a G Protein-coupled Receptor in Yeast

机译:信号输出对酵母中G蛋白偶联受体Ste2p激动剂占据的可变依赖性。

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摘要

We report here on the relationship between ligand binding and signaling responses in the yeast pheromone response pathway, a well characterized G protein-coupled receptor system. Responses to agonist (α-factor) by cells expressing widely varying numbers of receptors depend primarily on fractional occupancy, not the absolute number of agonist-bound receptors. Furthermore, the concentration of competitive antagonist required to inhibit α-factor-dependent signaling is more than 10-fold higher than predicted based on the known ligand affinities. Thus, responses to a particular number of agonist-bound receptors can vary greatly, depending on whether there are unoccupied or antagonist-bound receptors present on the same cell surface. This behavior does not appear to be due to pre-coupling of receptors to G protein or to the Sst2p regulator of G protein signaling. The results are consistent with a signaling response that is determined by the integration of positive signals from agonist-occupied receptors and inhibitory signals from unoccupied receptors, where the inhibitory signals can be diminished by antagonist binding.
机译:我们在这里报告配体结合和酵母信息素反应途径中的信号反应之间的关系,这是一个特征明确的G蛋白偶联受体系统。表达受体数目广泛变化的细胞对激动剂(α因子)的反应主要取决于分数的占用,而不是激动剂结合受体的绝对数目。此外,抑制α-因子依赖性信号传导所需的竞争性拮抗剂的浓度比基于已知配体亲和力所预测的浓度高10倍以上。因此,取决于在同一细胞表面上是否存在未被占用的或与拮抗剂结合的受体,对特定数量的与激动剂结合的受体的反应可以有很大的不同。这种现象似乎不是由于受体与G蛋白的预偶联或G蛋白信号转导的Sst2p调节剂引起的。该结果与信号响应一致,该信号响应由激动剂占据的受体的正信号和未占据的受体的抑制信号的积分确定,在这种情况下,抑制信号可以通过拮抗剂结合而减弱。

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