首页> 外文期刊>Journal of pineal research >Circadian rhythm of mt1 melatonin receptor expression in the suprachiasmatic nucleus of the C3H/HeN mouse.
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Circadian rhythm of mt1 melatonin receptor expression in the suprachiasmatic nucleus of the C3H/HeN mouse.

机译:C3H / HeN小鼠视交叉上核中mt1褪黑素受体表达的昼夜节律。

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This report studied the diurnal and circadian rhythms of mt1 melatonin receptor expression in the SCN of C3H/HeN mice maintained in either a light:dark (LD) cycle or in constant dark for a minimum of 6 wk. Diurnal times (ZT) were assessed with reference to the onset of the light period (ZT0) and circadian times (CT) were established by determining the phase of wheel running activity of each mouse before sacrifice. 2-[125I]-Iodomelatonin binding in the SCN revealed low amplitude diurnal and circadian rhythms with highest levels of binding 2 hr after lights on (41.3+/-1.7 fmol/mg protein, n = 5, at ZT2) or at the beginning of the subjective day (48.6+/-2.1 fmol/mg protein, n = 6, CT2), respectively. The expression of mt1 mRNA, determined by in situ hybridization with a 35S-labeled mouse mt1 riboprobe, showed robust diurnal and circadian rhythms. In animals housed under a LD cycle, low levels of expression were observed during the day, with a rapid rise in mt1 melatonin receptor expression at the beginning of the dark period (ZT14), coincident with an abrupt increase in levels of circulating melatonin measured by radioimmunoassay. In animals housed under constant dark conditions, a robust peak of mt1 mRNA expression occurred in the middle of the subjective night (CT18), 8 hr before the peak of protein expression, while the lowest levels of mt1 mRNA expression were observed during the day (CTI10). Results suggest that mt1 melatonin receptor rhythm in the C3H/HeN mouse SCN is regulated both by light and by the biological clock as distinct rhythms of both mRNA and protein are differentially expressed under a LD cycle and constant dark conditions.
机译:该报告研究了C3H / HeN小鼠SCN中mt1褪黑素受体表达的昼夜节律,昼夜节律维持在明暗(LD)周期或恒定暗中至少6周。参考光周期的开始(ZT0)评估昼夜时间(ZT),并通过确定处死前每只小鼠的滚轮运行活动的相位来确定昼夜节律时间(CT)。 SCN中的2- [125I]-碘降钙素结合显示低振幅的昼夜节律和昼夜节律,在开光(41.3 +/- 1.7 fmol / mg蛋白,n = 5,在ZT2处)或开始后2小时,结合水平最高主观日的时间(48.6 +/- 2.1 fmol / mg蛋白,n = 6,CT2)。通过与35S标记的小鼠mt1核糖探针原位杂交确定的mt1 mRNA的表达显示出强劲的昼夜节律和昼夜节律。在LD周期下饲养的动物中,白天观察到低水平的表达,在黑暗时期开始时mt1褪黑素受体表达迅速升高(ZT14),与循环褪黑素水平的突然升高相吻合。放射免疫分析。在恒定黑暗条件下饲养的动物中,mt1 mRNA表达的强劲峰值出现在主观夜晚(CT18)的中部,即蛋白质表达峰值之前的8小时,而白天则观察到了最低水平的mt1 mRNA表达( CTI10)。结果表明,C3H / HeN小鼠SCN中的mt1褪黑素受体节律受光和生物钟的调节,因为在LD循环和恒定的黑暗条件下,mRNA和蛋白质的独特节律被差异表达。

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