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PDF循环在果蝇大脑背侧原脑区对于昼夜节律时钟功能并非必需。

PDF cycling in the dorsal protocerebrum of the Drosophila brain is not necessary for circadian clock function.

作者信息

Kula Elzbieta, Levitan Edwin S, Pyza Elzbieta, Rosbash Michael

机构信息

Department of Biology-HHMI, Brandeis University, Waltham, MA 02454, USA.

出版信息

J Biol Rhythms. 2006 Apr;21(2):104-17. doi: 10.1177/0748730405285715.

Abstract

In Drosophila, the neuropeptide pigment-dispersing factor (PDF) is a likely circadian molecule, secreted by central pacemaker neurons (LNvs). PDF is expressed in both small and large LNvs (sLNvs and lLNvs), and there are striking circadian oscillations of PDF staining intensity in the small cell termini, which require a functional molecular clock. This cycling may be relevant to the proposed role of PDF as a synchronizer of the clock system or as an output signal connecting pacemaker cells to locomotor activity centers. In this study, the authors use a generic neuropeptide fusion protein (atrial natriuretic factor-green fluorescent protein [ANF-GFP]) and show that it can be expressed in the same neurons as PDF itself. Yet, ANF-GFP as well as PDF itself does not manifest any cyclical accumulation in sLNv termini in adult transgenic flies. Surprisingly, the absence of detectable PDF cycling is not accompanied by any detectable behavioral pheno-type, since these transgenic flies have normal morning and evening anticipation in a light-dark cycle (LD) and are fully rhythmic in constant darkness (DD). The molecular clock is also not compromised. The results suggest that robust PDF cycling in sLNv termini plays no more than a minor role in the Drosophila circadian system and is apparently not even necessary for clock output function.

摘要

在果蝇中,神经肽色素分散因子(PDF)可能是一种昼夜节律分子,由中央起搏器神经元(LNvs)分泌。PDF在小型和大型LNvs(sLNvs和lLNvs)中均有表达,并且在小细胞末端存在明显的PDF染色强度的昼夜节律振荡,这需要一个功能性分子钟。这种循环可能与PDF作为时钟系统同步器或作为连接起搏器细胞与运动活动中心的输出信号的拟议作用相关。在本研究中,作者使用了一种通用神经肽融合蛋白(心房利钠因子-绿色荧光蛋白[ANF-GFP]),并表明它可以在与PDF自身相同的神经元中表达。然而,在成年转基因果蝇的sLNv末端,ANF-GFP以及PDF自身均未表现出任何周期性积累。令人惊讶的是,未检测到PDF循环并不伴随着任何可检测到的行为表型,因为这些转基因果蝇在明暗循环(LD)中具有正常的早晚预期,并且在持续黑暗(DD)中具有完全的节律性。分子钟也未受损。结果表明,sLNv末端强烈的PDF循环在果蝇昼夜节律系统中所起的作用不超过次要作用,而且显然对于时钟输出功能甚至不是必需的。

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