Sabatier Nancy, Caquineau Céline, Dayanithi Govindan, Bull Philip, Douglas Alison J, Guan Xiao Ming M, Jiang Michael, Van der Ploeg Lex, Leng Gareth
Department of Biomedical Sciences, University of Edinburgh Medical School, Edinburgh EH8 9XD, United Kingdom.
J Neurosci. 2003 Nov 12;23(32):10351-8. doi: 10.1523/JNEUROSCI.23-32-10351.2003.
The peptides alpha-melanocyte stimulating hormone (alpha-MSH) and oxytocin, when administered centrally, produce similar behavioral effects. alpha-MSH induces Fos expression in supraoptic oxytocin neurons, and alpha-MSH melanocortin-4 receptors (MC4Rs) are highly expressed in the supraoptic nucleus, suggesting that alpha-MSH and oxytocin actions are not independent. Here we investigated the effects of alpha-MSH on the activity of supraoptic neurons. We confirmed that alpha-MSH induces Fos expression in the supraoptic nucleus when injected centrally and demonstrated that alpha-MSH also stimulates Fos expression in the nucleus when applied locally by retrodialysis. Thus alpha-MSH-induced Fos expression is not associated with electrophysiological excitation of supraoptic neurons because central injection of alpha-MSH or selective MC4 receptor agonists inhibited the electrical activity of oxytocin neurons in the supraoptic nucleus recorded in vivo. Consistent with these observations, oxytocin secretion into the bloodstream decreased after central injection of alpha-MSH. However, MC4R ligands induced substantial release of oxytocin from dendrites in isolated supraoptic nuclei. Because dendritic oxytocin release can be triggered by changes in [Ca2+]i, we measured [Ca2+]i responses in isolated supraoptic neurons and found that MC4R ligands induce a transient [Ca2+]i increase in oxytocin neurons. This response was still observed in low extracellular Ca2+ concentration and probably reflects mobilization of [Ca2+]i from intracellular stores rather than entry via voltage-gated channels. Taken together, these results show for the first time that a peptide, here alpha-MSH, can induce differential regulation of dendritic release and systemic secretion of oxytocin, accompanied by dissociation of Fos expression and electrical activity.
α-黑素细胞刺激素(α-MSH)和催产素经中枢给药时会产生相似的行为效应。α-MSH可诱导视上核催产素神经元中Fos表达,且α-MSH黑素皮质素4受体(MC4R)在视上核中高度表达,这表明α-MSH和催产素的作用并非相互独立。在此,我们研究了α-MSH对视上核神经元活性的影响。我们证实,α-MSH经中枢注射时可诱导视上核中Fos表达,并且证明通过逆向透析局部应用α-MSH时也能刺激该核中Fos表达。因此,α-MSH诱导的Fos表达与视上核神经元的电生理兴奋无关,因为中枢注射α-MSH或选择性MC4受体激动剂会抑制体内记录的视上核中催产素神经元的电活动。与这些观察结果一致,中枢注射α-MSH后,催产素分泌入血液的量减少。然而,MC4R配体可诱导分离的视上核中树突释放大量催产素。由于树突催产素释放可由细胞内钙离子浓度([Ca2+]i)变化触发,我们测量了分离的视上核神经元中的[Ca2+]i反应,发现MC4R配体可诱导催产素神经元中[Ca2+]i短暂升高。在低细胞外钙离子浓度下仍可观察到这种反应,这可能反映了[Ca2+]i从细胞内储存库的动员,而非通过电压门控通道的进入。综上所述,这些结果首次表明,一种肽(此处为α-MSH)可诱导催产素树突释放和全身分泌的差异调节,同时伴有Fos表达与电活动的解离。