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Sensitivity to Pigment-Dispersing Factor (PDF) Is Cell-Type Specific among PDF-Expressing Circadian Clock Neurons in the Madeira Cockroach

机译:对颜料分散因子(PDF)的敏感性是Codeira蟑螂的PDF表达昼夜节日神经元中的细胞类型

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Transplantation studies have pinpointed the circadian clock of the Madeira cockroach to the accessory medulla (AME) of the brain’s optic lobes. The AME is innervated by approximately 240 adjacent neuropeptidergic neurons, including 12 pigment-dispersing factor (PDF)-expressing neurons anterior to the AME (aPDFMEs). Four of the aPDFMEs project contralaterally, controlling locomotor activity rhythms of the night-active cockroach. The present in vitro Ca~(2+)imaging analysis focuses on contralaterally projecting AME neurons and their responses to PDF, GABA, and acetylcholine (ACh). First, rhodamine-dextran backfills from the contralateral optic stalk identified contralaterally projecting AME neurons, which were then dispersed in primary cell cultures. After characterization of PDF, GABA, and ACh responses, PDF immunocytochemistry identified ipsilaterally and contralaterally projecting PDFMEs. All PDF-sensitive clock neurons, PDF-immunoreactive clock neurons, and the majority of ipsilaterally and contralaterally projecting cells were excited by ACh. GABA inhibited all PDF-expressing clock neurons, and about half of other ipsilaterally projecting and most contralaterally projecting clock neurons. For the first time, we identified PDF autoreceptors in PDF-secreting cockroach circadian pacemakers. The medium-sized aPDFMEs and all other contralaterally projecting PDF-sensitive clock cells were inhibited by PDF. The ipsilaterally remaining small PDF-sensitive clock cells were activated by PDF. Only the largest aPDFME did not express PDF autoreceptors. We hypothesize that opposing PDF signaling generates 2 different ensembles of clock cells with antiphasic activity, regulating and maintaining a constant phase relationship between rest and activity cycles of the night-active cockroach.
机译:移植研究已经确定了马德拉蟑螂的昼夜昼夜昼夜视光瓣的辅助髓质(AME)。 AME由约240个相邻的神经肽神经元接头,包括12种颜料分散因子(PDF) - 前胸神经元(APDFME)。另一个APDFMES对逆势,控制夜间活性蟑螂的机车活动节奏。本发明的体外Ca〜(2+)成像分析侧重于对侧突出的ame神经元及其对PDF,GABA和乙酰胆碱(ACH)的反应。首先,罗丹明 - 葡聚糖从对侧视神经术中识别对侧突出的ame神经元,然后分散在原发性细胞培养物中。在表征PDF,GABA和ACH反应后,PDF免疫细胞化学鉴定了一侧和对侧突出的PDFMES。所有PDF敏感的时钟神经元,PDF免疫反应性时钟神经元和大部分均匀突出的脉络和对侧突出的细胞都被ACH激发。 GABA抑制了所有表达PDF的时钟神经元,以及约一半的一个中间突出和最对冲突出的时钟神经元。我们首次识别PDF分泌蟑螂昼夜野星起搏器中的PDF自身吸入器。通过PDF抑制中等大小的APDFMES和所有其他对侧突出的PDF敏感时钟细胞。通过PDF激活一次水管剩余的小PDF敏感时钟电池。只有最大的APDFME没有表达PDF自动受体。我们假设相反的PDF信号传导产生2个不同的时钟细胞集时的偶然活动,调节和维持夜间活性蟑螂的休息和活动循环之间的恒定相位关系。

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