Dardente H, Klosen P, Pévet P, Masson-Pévet M
Neurobiologie des Rythmes, UMR 7518 CNRS/ULP, Strasbourg, France.
J Neuroendocrinol. 2003 Aug;15(8):778-86. doi: 10.1046/j.1365-2826.2003.01060.x.
Melatonin, secreted only during the night by the pineal gland, transduces the photoperiodic message to the organism. One important target for the hormone is the pars tuberalis (PT) of the adenohypophysis which displays a very high number of melatonin binding sites in mammals and is implicated in the seasonal regulation of prolactin secretion. To gain insight into the mechanism by which the melatonin signal is decoded in the PT, we studied the effect of photoperiod on the PT cells expressing the MT1 melatonin receptor in a highly photoperiodic species, the European hamster. Recently, we showed that, in the rat, the MT1 receptor mRNA is expressed in PT-specific cells characterized by their expression of beta-thyroid stimulating hormone (beta-TSH) along with the alpha-glycoprotein subunit (alpha-GSU). As the cellular composition of the PT shows variability among species, we first identified the cell type expressing the MT1 receptor in the European hamster by combining immunocytochemistry and nonradioactive in situ hybridization for the MT1 receptor mRNA. Our results show that, in the European hamster, as in the rat, the MT1 receptor is only expressed by the PT-specific-cells, beta-TSH and alpha-GSU positive. In a second step, we analysed the effects of photoperiod on the MT1 mRNA, and on beta-TSH and alpha-GSU both at the mRNA and protein levels. Our data show that, compared to long photoperiod, short photoperiod induces a dramatic decrease of MT1, beta-TSH and alpha-GSU expression. Protein levels of beta-TSH and alpha-GSU were also dramatically reduced in short photoperiod. Together, our data suggest that melatonin exerts its seasonal effects in the PT by signalling to PT specific-cells through the MT1 receptor subtype.
褪黑素仅在夜间由松果体分泌,它将光周期信息传递给机体。该激素的一个重要作用靶点是腺垂体的结节部(PT),在哺乳动物中,PT显示出大量的褪黑素结合位点,并且与催乳素分泌的季节性调节有关。为了深入了解褪黑素信号在PT中被解码的机制,我们在一种光周期变化明显的物种——欧洲仓鼠中,研究了光周期对表达MT1褪黑素受体的PT细胞的影响。最近,我们发现,在大鼠中,MT1受体mRNA在PT特异性细胞中表达,这些细胞的特征是同时表达β-促甲状腺激素(β-TSH)和α-糖蛋白亚基(α-GSU)。由于PT的细胞组成在不同物种间存在差异,我们首先通过免疫细胞化学和MT1受体mRNA的非放射性原位杂交相结合的方法,确定了欧洲仓鼠中表达MT1受体的细胞类型。我们的结果表明,在欧洲仓鼠中,与大鼠一样,MT1受体仅由PT特异性细胞表达,这些细胞β-TSH和α-GSU呈阳性。在第二步中,我们分析了光周期对MT1 mRNA以及β-TSH和α-GSU在mRNA和蛋白质水平上的影响。我们的数据表明,与长光周期相比,短光周期会导致MT1、β-TSH和α-GSU表达显著下降。在短光周期中,β-TSH和α-GSU的蛋白质水平也显著降低。总之,我们的数据表明,褪黑素通过MT1受体亚型向PT特异性细胞发出信号,从而在PT中发挥其季节性作用。