Life Sciences Institute and Department of Cell and Developmental Biology, University of Michigan, Ann Arbor, MI 48109, USA.
Life Sciences Institute and Department of Cell and Developmental Biology, University of Michigan, Ann Arbor, MI 48109, USA; School of Medicine, Dalian University, Dalian, Liaoning 116622, China.
Curr Biol. 2023 Apr 10;33(7):1372-1380.e4. doi: 10.1016/j.cub.2023.02.032. Epub 2023 Mar 8.
Animals' response to a stimulus in one sensory modality is usually influenced by other modalities. One important type of multisensory integration is the cross-modal modulation, in which one sensory modality modulates (typically inhibits) another. Identification of the mechanisms underlying cross-modal modulations is crucial for understanding how sensory inputs shape animals' perception and for understanding sensory processing disorders. However, the synaptic and circuit mechanisms that underlie cross-modal modulation are poorly understood. This is due to the difficulty of separating cross-modal modulation from multisensory integrations in neurons that receive excitatory inputs from two or more sensory modalities-in which case it is unclear what the modulating or modulated modality is. In this study, we report a unique system for studying cross-modal modulation by taking advantage of the genetic resources in Drosophila. We show that gentle mechanical stimuli inhibit nociceptive responses in Drosophila larvae. Low-threshold mechanosensory neurons inhibit a key second-order neuron in the nociceptive pathway through metabotropic GABA receptors on nociceptor synaptic terminals. Strikingly, this cross-modal inhibition is only effective when nociceptor inputs are weak, thus serving as a gating mechanism for filtering out weak nociceptive inputs. Our findings unveil a novel cross-modal gating mechanism for sensory pathways.
动物对一种感觉模式刺激的反应通常会受到其他感觉模式的影响。一种重要的多感觉整合形式是跨感觉模态调制,其中一种感觉模态调制(通常是抑制)另一种感觉模态。识别跨感觉模态调制的机制对于理解感觉输入如何塑造动物的感知以及理解感觉处理障碍至关重要。然而,跨感觉模态调制的突触和电路机制还知之甚少。这是因为很难将来自两个或更多感觉模态的兴奋性输入的神经元中的跨感觉模态调制与多感觉整合区分开来——在这种情况下,不清楚调制的或被调制的模态是什么。在这项研究中,我们利用果蝇的遗传资源,报告了一个用于研究跨感觉模态调制的独特系统。我们表明,温和的机械刺激抑制果蝇幼虫的伤害感受反应。低阈值机械感觉神经元通过伤害感受器突触末端的代谢型 GABA 受体抑制伤害感受通路中的一个关键二级神经元。引人注目的是,这种跨感觉模态抑制只有在伤害感受器输入较弱时才有效,因此作为一种门控机制,用于过滤掉较弱的伤害感受输入。我们的发现揭示了感觉通路的一种新的跨感觉模态门控机制。