2Inserm U1048, Institut des Maladies Métaboliques et Cardiovasculaires, I2MC, 1, avenue Jean-Poulhès, BP84225, 31432 Toulouse Cedex 4, France.
FASEB J. 2014 Mar;28(3):1342-54. doi: 10.1096/fj.13-239285. Epub 2013 Dec 5.
The role of β-adrenergic receptors (β-ARs) remains controversial in normal and tumor breast. Herein we explore the cAMP signaling involved in β-AR-dependent control of proliferation and adhesion of nontumor human breast cell line MCF-10A. Low concentrations of a β-agonist, isoproterenol (ISO), promote cell adhesion (87.5% cells remaining adherent to the plastic dishes following specific detachment vs. 35.0% in control, P<0.001), while increasing concentrations further engages an additional 36% inhibition of Erk1/2 phosphorylation (p-Erk1/2)-dependent cell proliferation (P<0.01). Isoproterenol dose response on cell adhesion was fitted to a 2-site curve (EC50(1): 16.5±11.5 fM, EC50(2): 4.08±3.09 nM), while ISO significantly inhibited p-Erk1/2 according to a 1-site model (EC50: 0.25±0.13 nM). Using β-AR-selective agonist/antagonists and cAMP analogs/inhibitors, we identified a dosage-dependent signaling in which low ISO concentrations target a β2-AR population localized in raft microdomains and stimulate a Gs/cAMP/Epac/adhesion-signaling module, while higher concentrations engage a concomitant activation of another β2-AR population outside rafts and inhibit the proliferation by a Gs/cAMP/PKA-dependent signaling module. Our data provide a new molecular basis for the dose-dependent switch of β-AR signaling. This study also sheds light on a new cAMP pathway core mechanism with a single receptor triggering dual cAMP signaling controlled by PKA or Epac but with different cellular outputs.
β-肾上腺素能受体(β-AR)在正常和肿瘤乳腺中的作用仍存在争议。在此,我们探讨了 cAMP 信号转导在β-AR 依赖性控制非肿瘤人乳腺细胞系 MCF-10A 的增殖和黏附中的作用。低浓度的β-激动剂异丙肾上腺素(ISO)促进细胞黏附(与对照组相比,特定分离后有 87.5%的细胞仍黏附在塑料培养皿上,P<0.001),而增加的浓度进一步使 Erk1/2 磷酸化(p-Erk1/2)依赖性细胞增殖抑制增加 36%(P<0.01)。异丙肾上腺素对细胞黏附的剂量反应符合双位点曲线(EC50(1):16.5±11.5 fM,EC50(2):4.08±3.09 nM),而 ISO 显著抑制 p-Erk1/2 则符合单一位点模型(EC50:0.25±0.13 nM)。使用β-AR 选择性激动剂/拮抗剂和 cAMP 类似物/抑制剂,我们确定了一种剂量依赖性信号转导,其中低浓度的 ISO 靶向位于筏微域中的β2-AR 群体,并刺激 Gs/cAMP/Epac/黏附信号模块,而较高浓度则同时激活筏外的另一个β2-AR 群体,并通过 Gs/cAMP/PKA 依赖性信号模块抑制增殖。我们的数据为β-AR 信号的剂量依赖性转换提供了新的分子基础。这项研究还揭示了一个新的 cAMP 途径核心机制,其中单个受体触发由 PKA 或 Epac 控制的双 cAMP 信号,但具有不同的细胞输出。