Department of Neurobiology, University of Massachusetts Medical School, 364 Plantation Street, Worcester, MA 01605, USA.
Neuron. 2013 Apr 10;78(1):152-65. doi: 10.1016/j.neuron.2013.01.035.
The neuropeptide PDF is crucial for Drosophila circadian behavior: it keeps circadian neurons synchronized. Here, we identify GW182 as a key regulator of PDF signaling. Indeed, GW182 downregulation results in phenotypes similar to those of Pdf and Pdf-receptor (Pdfr) mutants. gw182 genetically interacts with Pdfr and cAMP signaling, which is essential for PDFR function. GW182 mediates miRNA-dependent gene silencing through its interaction with AGO1. Consistently, GW182's AGO1 interaction domain is required for GW182's circadian function. Moreover, our results indicate that GW182 modulates PDFR signaling by silencing the expression of the cAMP phosphodiesterase DUNCE. Importantly, this repression is under photic control, and GW182 activity level--which is limiting in circadian neurons--influences the responses of the circadian neural network to light. We propose that GW182's gene silencing activity functions as a rheostat for PDFR signaling and thus profoundly impacts the circadian neural network and its response to environmental inputs.
神经肽 PDF 对果蝇的生物钟行为至关重要:它使生物钟神经元保持同步。在这里,我们确定 GW182 是 PDF 信号的关键调节因子。事实上,GW182 的下调导致与 Pdf 和 Pdf 受体(Pdfr)突变体相似的表型。gw182 在遗传上与 Pdfr 和 cAMP 信号相互作用,这对于 PDFR 功能至关重要。GW182 通过与其与 AGO1 的相互作用来介导 miRNA 依赖性基因沉默。一致地,GW182 的 AGO1 相互作用结构域对于 GW182 的生物钟功能是必需的。此外,我们的结果表明,GW182 通过沉默 cAMP 磷酸二酯酶 DUNCE 的表达来调节 PDFR 信号。重要的是,这种抑制受光照控制,并且在生物钟神经元中有限的 GW182 活性水平会影响生物钟神经网络对光的反应。我们提出,GW182 的基因沉默活性作为 PDFR 信号的变阻器起作用,从而深刻地影响生物钟神经网络及其对环境输入的反应。