Sensory thresholds enable animals to regulate their behavioral responses to environmental threats. Despite the importance of sensory thresholds for animal behavior and human health, we do not yet have a full appreciation of the underlying molecular-genetic and circuit mechanisms. The larval zebrafish acoustic startle response provides a powerful system to identify molecular mechanisms underlying establishment of sensory thresholds and plasticity of thresholds through mechanisms like habituation. Using this system, we identify Cadherin-16 as a previously undescribed regulator of sensory gating. We demonstrate that Cadherin-16 regulates sensory thresholds via an endocrine organ, the corpuscle of Stannius (CS), which is essential in zebrafish for regulating Ca2+ homeostasis. We further show that Cadherin-16 regulates whole-body calcium and ultimately behavior through the hormone Stanniocalcin 1l (Stc1l), and the IGF-regulatory metalloprotease, Papp-aa. Finally, we demonstrate the importance of the CS through ablation experiments that reveal its role in promoting normal acoustic sensory gating. Together, our results uncover a previously undescribed brain non-autonomous pathway for the regulation of behavior and underscore Ca2+ homeostasis as a critical process underlying sensory gating in vivo.
Cadherin-16 regulates acoustic sensory gating in zebrafish through endocrine signaling.
钙黏蛋白-16通过内分泌信号调节斑马鱼的声学感觉门控
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作者:Schloss Susannah S, Marshall Zackary Q, Santistevan Nicholas J, Gjorcheska Stefani, Stenzel Amanda, Barske Lindsey, Nelson Jessica C
| 期刊: | PLoS Biology | 影响因子: | 7.200 |
| 时间: | 2025 | 起止号: | 2025 May 2; 23(5):e3003164 |
| doi: | 10.1371/journal.pbio.3003164 | 种属: | Fish |
| 研究方向: | 免疫/内分泌 | ||
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