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果蝇中含 PDF 的生物钟神经元内及神经元间令人惊讶的基因表达模式。

Surprising gene expression patterns within and between PDF-containing circadian neurons in Drosophila.

机构信息

Howard Hughes Medical Institute, National Center for Behavioral Genomics, Department of Biology, Brandeis University, Waltham, MA 02454, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Jul 27;107(30):13497-502. doi: 10.1073/pnas.1002081107. Epub 2010 Jul 12.

DOI:10.1073/pnas.1002081107
PMID:20624977
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2922133/
Abstract

To compare circadian gene expression within highly discrete neuronal populations, we separately purified and characterized two adjacent but distinct groups of Drosophila adult circadian neurons: the 8 small and 10 large PDF-expressing ventral lateral neurons (s-LNvs and l-LNvs, respectively). The s-LNvs are the principal circadian pacemaker cells, whereas recent evidence indicates that the l-LNvs are involved in sleep and light-mediated arousal. Although half of the l-LNv-enriched mRNA population, including core clock mRNAs, is shared between the l-LNvs and s-LNvs, the other half is l-LNv- and s-LNv-specific. The distribution of four specific mRNAs is consistent with prior characterization of the four encoded proteins, and therefore indicates successful purification of the two neuronal types. Moreover, an octopamine receptor mRNA is selectively enriched in l-LNvs, and only these neurons respond to in vitro application of octopamine. Dissection and purification of l-LNvs from flies collected at different times indicate that these neurons contain cycling clock mRNAs with higher circadian amplitudes as well as at least a 10-fold higher fraction of oscillating mRNAs than all previous analyses of head RNA. Many of these cycling l-LNv mRNAs are well expressed but do not cycle or cycle much less well elsewhere in heads. The results suggest that RNA cycling is much more prominent in circadian neurons than elsewhere in heads and may be particularly important for the functioning of these neurons.

摘要

为了比较高度离散神经元群体中的生物钟基因表达,我们分别纯化并鉴定了两个相邻但不同的果蝇成年生物钟神经元群:8 个小的 PDF 表达的腹外侧神经元(s-LNvs)和 10 个大的 PDF 表达的腹外侧神经元(l-LNvs)。s-LNvs 是主要的生物钟起搏细胞,而最近的证据表明 l-LNvs 参与睡眠和光介导的觉醒。尽管 l-LNv 富集的 mRNA 群体的一半,包括核心时钟 mRNAs,在 l-LNvs 和 s-LNvs 之间共享,但另一半是 l-LNv 和 s-LNv 特异性的。四种特定 mRNAs 的分布与这四种编码蛋白的先前特征一致,因此表明两种神经元类型的成功纯化。此外,一种章鱼胺受体 mRNA 在 l-LNvs 中选择性富集,只有这些神经元对体外应用章鱼胺有反应。从不同时间收集的果蝇中分离和纯化 l-LNvs 表明,这些神经元包含具有更高生物钟振幅的循环时钟 mRNAs,并且与之前对头 RNA 的所有分析相比,至少有 10 倍的振荡 mRNAs。这些循环的 l-LNv mRNAs 中的许多表达良好,但在头部的其他部位不循环或循环得差得多。结果表明,RNA 循环在生物钟神经元中比在头部的其他部位更为明显,这可能对这些神经元的功能特别重要。

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Dissecting differential gene expression within the circadian neuronal circuit of Drosophila.解析果蝇昼夜节律神经元回路中的差异基因表达。
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PDF cells are a GABA-responsive wake-promoting component of the Drosophila sleep circuit.PDF神经元是果蝇睡眠回路中对γ-氨基丁酸(GABA)有反应的促进觉醒的组成部分。
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