Wehbi Vanessa, Tranchant Thibaud, Durand Guillaume, Musnier Astrid, Decourtye Jérémy, Piketty Vincent, Butnev Vladimir Y, Bousfield George R, Crépieux Pascale, Maurel Marie-Christine, Reiter Eric
Unité Mixte de Recherche 6175, 37380 Nouzilly, France.
Mol Endocrinol. 2010 Mar;24(3):561-73. doi: 10.1210/me.2009-0347. Epub 2010 Jan 27.
Deglycosylated FSH is known to trigger poor Galphas coupling while efficiently binding its receptor. In the present study, we tested the possibility that a deglycosylated equine LH (eLHdg) might be able to selectively activate beta-arrestin-dependent signaling. We compared native eLH to an eLH derivative [i.e. truncated eLHbeta (Delta121-149) combined with asparagine56-deglycosylated eLHalpha (eLHdg)] previously reported as an antagonist of cAMP accumulation at the FSH receptor (FSH-R). We confirmed that, when used in conjunction with FSH, eLHdg acted as an antagonist for cAMP accumulation in HEK-293 cells stably expressing the FSH-R. Furthermore, when used alone at concentrations up to 1 nM, eLHdg had no detectable agonistic activity on cAMP accumulation, protein kinase A activity or cAMP-responsive element-dependent transcriptional activity. At higher concentrations, however, a weak agonistic action was observed with eLHdg, whereas eLH led to robust responses whatever the concentration. Both eLH and eLHdg triggered receptor internalization and led to beta-arrestin recruitment. Both eLH and eLHdg triggered ERK and ribosomal protein (rp) S6 phosphorylation at 1 nM. The depletion of endogenous beta-arrestins had only a partial effect on eLH-induced ERK and rpS6 phosphorylation. In contrast, ERK and rpS6 phosphorylation was completely abolished at all time points in beta-arrestin-depleted cells. Together, these results show that eLHdg has the ability to preferentially activate beta-arrestin-dependent signaling at the FSH-R. This finding provides a new conceptual and experimental framework to revisit the physiological meaning of gonadotropin structural heterogeneity. Importantly, it also opens a field of possibilities for the development of selective modulators of gonadotropin receptors.
已知去糖基化的促卵泡激素(FSH)在有效结合其受体时会引发不良的Gαs偶联。在本研究中,我们测试了去糖基化的马促黄体生成素(eLHdg)是否能够选择性激活β - 抑制蛋白依赖性信号传导的可能性。我们将天然eLH与一种eLH衍生物[即截短的eLHβ(Δ121 - 149)与天冬酰胺56去糖基化的eLHα(eLHdg)结合]进行了比较,该衍生物先前被报道为FSH受体(FSH - R)上cAMP积累的拮抗剂。我们证实,当与FSH联合使用时,eLHdg在稳定表达FSH - R的HEK - 293细胞中对cAMP积累起拮抗剂作用。此外,当单独使用浓度高达1 nM时,eLHdg对cAMP积累、蛋白激酶A活性或cAMP反应元件依赖性转录活性没有可检测到的激动活性。然而,在更高浓度下,观察到eLHdg有微弱的激动作用,而无论浓度如何,eLH都会引发强烈反应。eLH和eLHdg都触发了受体内化并导致β - 抑制蛋白募集。eLH和eLHdg在1 nM时都触发了细胞外信号调节激酶(ERK)和核糖体蛋白(rp)S6磷酸化。内源性β - 抑制蛋白的耗尽对eLH诱导的ERK和rpS6磷酸化只有部分影响。相反,在β - 抑制蛋白耗尽的细胞中,ERK和rpS6磷酸化在所有时间点都完全被消除。总之,这些结果表明eLHdg有能力在FSH - R上优先激活β - 抑制蛋白依赖性信号传导。这一发现为重新审视促性腺激素结构异质性的生理意义提供了一个新的概念和实验框架。重要的是,它还为促性腺激素受体选择性调节剂的开发开辟了一个可能性领域。