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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Calcium and photoentrainment in chick pineal cells revisited: effects of caffeine, thapsigargin, EGTA, and light on the melatonin rhythm.
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Calcium and photoentrainment in chick pineal cells revisited: effects of caffeine, thapsigargin, EGTA, and light on the melatonin rhythm.

机译:钙和光吸收在鸡松果细胞中的重新探讨:咖啡因,毒胡萝卜素,EGTA和光对褪黑激素节律的影响。

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摘要

Chick pineal cells in dispersed cell culture display a persistent, photosensitive, circadian rhythm of melatonin production and release. Light pulses have at least two distinguishable effects on these cells, i.e., acute suppression of melatonin output and phase shifts (entrainment) of the underlying circadian pacemaker. Previous results linked calcium influx through voltage-sensitive calcium channels in the plasma membrane to acute regulation of melatonin synthesis but denied a role for such influx in entrainment. Those experiments did not, however, address the role of intracellular calcium metabolism. Here we describe the effects of pulses of caffeine, thapsigargin, and EGTA on the melatonin rhythm, and their interactions with the effects of light pulses. Caffeine had two distinguishable effects on these cells, acute enhancement of melatonin output (attributable to phosphodiesterase inhibition) and phase shifts of the circadian pacemaker with a light-like pattern (attributable to effects on intracellular calcium). Phase shifts induced by light and caffeine were not additive. Thapsigargin (which specifically blocks the pump that replenishes intracellular calcium stores, thereby increasing cytoplasmic calcium and depleting intracellular stores) had no phase-shifting effects by itself but reduced the size of the phase advances induced by caffeine or light. Low calcium solution acutely suppressed melatonin output without inducing phase shifts or affecting those induced by caffeine or light. However, addition of EGTA (which specifically chelates calcium, thereby lowering cytoplasmic calcium and depleting intracellular stores) did reduce the size of phase advances induced by caffeine or light, in normal medium or in low calcium solution, without inducing a phase shift by itself at that phase. Taken together, these results point toward a role for intracellular calcium fluxes in entrainment of the circadian pacemaker.
机译:分散的细胞培养物中的小松果细胞显示褪黑素产生和释放的持续,光敏,昼夜节律。光脉冲对这些细胞至少有两个明显的影响,即,褪黑激素输出的急性抑制和潜在昼夜节律起搏器的相移(夹带)。先前的结果将钙通过质膜中电压敏感钙通道的流入与褪黑激素合成的急性调节联系起来,但否认了这种流入在夹带中的作用。但是,那些实验并未解决细胞内钙代谢的作用。在这里,我们描述了咖啡因,毒胡萝卜素和EGTA的脉冲对褪黑激素节律的影响,以及它们与光脉冲的相互作用。咖啡因对这些细胞有两个明显的影响,即褪黑激素输出的急剧增加(归因于磷酸二酯酶抑制)和昼夜节律起搏器的相移(呈轻样模式)(归因于对细胞内钙的影响)。光和咖啡因引起的相移不是累加的。毒胡萝卜素(专门阻止补充细胞内钙储存的泵,从而增加细胞质钙并耗尽细胞内储存)本身没有相移作用,但减少了咖啡因或光诱导的相进展的大小。低钙溶液可迅速抑制褪黑激素输出,而不会引起相移或影响咖啡因或光诱导的相移。但是,添加EGTA(特别是螯合钙,从而降低细胞质钙并减少细胞内储存)确实减少了咖啡因或光在正常培养基或低钙溶液中诱导的相移的大小,而不会自行引起相移这个阶段。综上所述,这些结果表明细胞内钙通量在昼夜节律起搏器的夹带中起作用。

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