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视叶神经胶质生物钟中PER水平的变化及其受PDF信号的负调控

On Variations in the Level of PER in Glial Clocks of Optic Lobe and Its Negative Regulation by PDF Signaling.

作者信息

Górska-Andrzejak Jolanta, Chwastek Elżbieta M, Walkowicz Lucyna, Witek Kacper

机构信息

Department of Cell Biology and Imaging, Institute of Zoology and Biomedical Research, Jagiellonian University, Krakow, Poland.

出版信息

Front Physiol. 2018 Mar 19;9:230. doi: 10.3389/fphys.2018.00230. eCollection 2018.

Abstract

We show that the level of the core protein of the circadian clock Period (PER) expressed by glial peripheral oscillators depends on their location in the optic lobe. It appears to be controlled by the ventral lateral neurons (LNvs) that release the circadian neurotransmitter Pigment Dispersing Factor (PDF). We demonstrate that glial cells of the distal medulla neuropil (dMnGl) that lie in the vicinity of the PDF-releasing terminals of the LNvs possess receptors for PDF (PDFRs) and express PER at significantly higher level than other types of glia. Surprisingly, the amplitude of PER molecular oscillations in dMnGl is increased twofold in PDF-free environment, that is in mutants. The mutants also reveal an increased level of glia-specific protein REPO in dMnGl. The photoreceptors of the compound eye (R-cells) of the PDF-null flies, on the other hand, exhibit de-synchrony of PER molecular oscillations, which manifests itself as increased variability of PER-specific immunofluorescence among the R-cells. Moreover, the daily pattern of expression of the presynaptic protein Bruchpilot (BRP) in the lamina terminals of the R-cells is changed in mutant. Considering that PDFRs are also expressed by the marginal glia of the lamina that surround the R-cell terminals, the LNv pacemakers appear to be the likely modulators of molecular cycling in the peripheral clocks of both the glial cells and the photoreceptors of the compound eye. Consequently, some form of PDF-based coupling of the glial clocks and the photoreceptors of the eye with the central LNv pacemakers must be operational.

摘要

我们发现,由神经胶质外周振荡器表达的生物钟周期蛋白(PER)核心蛋白水平取决于它们在视叶中的位置。它似乎受释放昼夜节律神经递质色素分散因子(PDF)的腹侧外侧神经元(LNvs)控制。我们证明,位于LNvs释放PDF的终末附近的远端髓质神经毡(dMnGl)的神经胶质细胞具有PDF受体(PDFRs),并且与其他类型的神经胶质相比,其PER表达水平显著更高。令人惊讶的是,在无PDF环境中,即在突变体中,dMnGl中PER分子振荡的幅度增加了两倍。突变体还显示dMnGl中神经胶质特异性蛋白REPO的水平升高。另一方面,PDF缺失果蝇复眼的光感受器(R细胞)表现出PER分子振荡的去同步化,这表现为R细胞之间PER特异性免疫荧光的变异性增加。此外,突变体中R细胞在神经层终末的突触前蛋白bruchpilot(BRP)的每日表达模式发生了变化。考虑到围绕R细胞终末的神经层边缘神经胶质也表达PDFRs,LNv起搏器似乎是神经胶质细胞和复眼光感受器外周时钟中分子循环的可能调节因子。因此,某种基于PDF的神经胶质时钟和眼睛光感受器与中央LNv起搏器的耦合形式必定在起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d83/5868474/f446d634c6bb/fphys-09-00230-g0001.jpg

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