Hu Chun, Petersen Meike, Hoyer Nina, Spitzweck Bettina, Tenedini Federico, Wang Denan, Gruschka Alisa, Burchardt Lara S, Szpotowicz Emanuela, Schweizer Michaela, Guntur Ananya R, Yang Chung-Hui, Soba Peter
Center for Molecular Neurobiology (ZMNH), University Medical Center Hamburg-Eppendorf, University of Hamburg, Hamburg, Germany.
Department of Neurobiology, Duke University Medical Center, Durham, North Carolina, USA.
Nat Neurosci. 2017 Aug;20(8):1085-1095. doi: 10.1038/nn.4580. Epub 2017 Jun 12.
Nociception is an evolutionarily conserved mechanism to encode and process harmful environmental stimuli. Like most animals, Drosophila melanogaster larvae respond to a variety of nociceptive stimuli, including noxious touch and temperature, with stereotyped escape responses through activation of multimodal nociceptors. How behavioral responses to these different modalities are processed and integrated by the downstream network remains poorly understood. By combining trans-synaptic labeling, ultrastructural analysis, calcium imaging, optogenetics and behavioral analyses, we uncovered a circuit specific for mechanonociception but not thermonociception. Notably, integration of mechanosensory input from innocuous and nociceptive sensory neurons is required for robust mechanonociceptive responses. We further show that neurons integrating mechanosensory input facilitate primary nociceptive output by releasing short neuropeptide F, the Drosophila neuropeptide Y homolog. Our findings unveil how integration of somatosensory input and neuropeptide-mediated modulation can produce robust modality-specific escape behavior.
伤害感受是一种进化上保守的机制,用于编码和处理有害的环境刺激。与大多数动物一样,黑腹果蝇幼虫通过激活多模式伤害感受器,以刻板的逃避反应来应对各种伤害性刺激,包括有害触摸和温度。下游网络如何处理和整合对这些不同刺激模式的行为反应仍知之甚少。通过结合跨突触标记、超微结构分析、钙成像、光遗传学和行为分析,我们发现了一个特定于机械性伤害感受而非热伤害感受的神经回路。值得注意的是,来自无害和伤害性感觉神经元的机械感觉输入的整合是强大的机械性伤害感受反应所必需的。我们进一步表明,整合机械感觉输入的神经元通过释放短神经肽F(果蝇神经肽Y的同源物)促进初级伤害感受输出。我们的研究结果揭示了体感输入和神经肽介导的调节如何整合,从而产生强大的模式特异性逃避行为。