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Mapping Peptidergic Cells in Drosophila: Where DIMM Fits In

机译:绘制果蝇中的肽能细胞:DIMM插入其中

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摘要

The bHLH transcription factor DIMMED has been associated with the differentiation of peptidergic cells in Drosophila. However, whether all Drosophila peptidergic cells express DIMM, and the extent to which all DIMM cells are peptidergic, have not been determined. To address these issues, we have mapped DIMM expression in the central nervous system (CNS) and periphery in the late larval stage Drosophila. At 100 hr after egg-laying, DIMM immunosignals are largely congruent with a dimm-promoter reporter (c929-GAL4) and they present a stereotyped pattern of 306 CNS cells and 52 peripheral cells. We assigned positional values for all DIMM CNS cells with respect to reference gene expression patterns, or to patterns of secondary neuroblast lineages. We could assign provisional peptide identities to 68% of DIMM-expressing CNS cells (207/306) and to 73% of DIMM-expressing peripheral cells (38/52) using a panel of 24 markers for Drosophila neuropeptide genes. Furthermore, we found that DIMM co-expression was a prevalent feature within single neuropeptide marker expression patterns. Of the 24 CNS neuropeptide gene patterns we studied, six patterns are >90% DIMM-positive, while 16 of 22 patterns are >40% DIMM-positive. Thus most or all DIMM cells in Drosophila appear to be peptidergic, and many but not all peptidergic cells express DIMM. The co-incidence of DIMM-expression among peptidergic cells is best explained by a hypothesis that DIMM promotes a specific neurosecretory phenotype we term LEAP. LEAP denotes Large cells that display Episodic release of Amidated Peptides.
机译:bHLH转录因子DIMMED与果蝇中肽能细胞的分化有关。但是,尚未确定所有果蝇的肽原性细胞是否都表达DIMM,以及所有DIMM细胞是否具有肽原性的程度。为了解决这些问题,我们在果蝇后期的果蝇后期绘制了在中枢神经系统(CNS)和外围的DIMM表达图。产卵后100小时,DIMM免疫信号与调暗启动子报告基因(c929-GAL4)在很大程度上是一致的,它们呈现306个CNS细胞和52个周围细胞的定型模式。我们为所有DIMM CNS细胞分配了相对于参考基因表达模式或继发性成神经细胞谱系模式的位置值。我们可以使用一组果蝇神经肽基因的24个标记,将临时肽的身份分配给68%的DIMM表达的CNS细胞(207/306)和73%的DIMM表达的外周细胞(38/52)。此外,我们发现DIMM共表达是单个神经肽标记表达模式中的普遍特征。在我们研究的24种CNS神经肽基因模式中,有6种模式的DIMM阳性> 90%,而22种模式中的16种的DIMM阳性> 40%。因此,果蝇中的大多数或所有DIMM细胞似乎都是肽性的,许多但不是全部的肽性细胞都表达DIMM。 DIMM能促进一种特定的神经分泌表型(我们称之为LEAP)这一假设可以最好地解释肽表达细胞之间DIMM表达的共存现象。 LEAP表示显示出酰胺化肽的情景释放的大细胞。

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