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uv1神经内分泌细胞提供阴门开口的机械感觉反馈。

The uv1 Neuroendocrine Cells Provide Mechanosensory Feedback of Vulval Opening.

作者信息

Yan Lijie, Claman Alexander, Bode Addys, Collins Kevin M

机构信息

Department of Biology, University of Miami, Coral Gables, Florida 33143.

Department of Biology, University of Miami, Coral Gables, Florida 33143

出版信息

J Neurosci. 2025 Feb 5;45(6):e0678242024. doi: 10.1523/JNEUROSCI.0678-24.2024.

Abstract

Neuroendocrine cells react to physical, chemical, and synaptic signals originating from tissues and the nervous system, releasing hormones that regulate various body functions beyond the synapse. Neuroendocrine cells are often embedded in complex tissues making direct tests of their activation mechanisms and signaling effects difficult to study. In the nematode worm , four uterine-vulval (uv1) neuroendocrine cells sit above the vulval canal next to the egg-laying circuit, releasing tyramine and neuropeptides that feedback to inhibit egg laying. We have previously shown uv1 cells are mechanically deformed during egg laying, driving uv1 Ca transients. However, whether egg-laying circuit activity, vulval opening, and/or egg release triggered uv1 Ca activity was unclear. Here, we show uv1 responds directly to mechanical activation. Optogenetic vulval muscle stimulation triggers uv1 Ca activity following muscle contraction even in sterile animals. Direct mechanical prodding with a glass probe placed against the worm cuticle triggers robust uv1 Ca activity similar to that seen during egg laying. Direct mechanical activation of uv1 cells does not require other cells in the egg-laying circuit, synaptic or peptidergic neurotransmission, or transient receptor potential vanilloid and Piezo channels. EGL-19 L-type Ca channels, but not P/Q/N-type or ryanodine receptor Ca channels, promote uv1 Ca activity following mechanical activation. L-type channels also facilitate the coordinated activation of uv1 cells across the vulva, suggesting mechanical stimulation of one uv1 cell cross-activates the other. Our findings show how neuroendocrine cells like uv1 report on the mechanics of tissue deformation and muscle contraction, facilitating feedback to local circuits to coordinate behavior.

摘要

神经内分泌细胞对源自组织和神经系统的物理、化学及突触信号作出反应,释放调节突触之外各种身体功能的激素。神经内分泌细胞常常嵌入复杂组织中,这使得直接测试它们的激活机制和信号传导效应难以进行研究。在线虫中,四个子宫 - 外阴(uv1)神经内分泌细胞位于产卵回路旁的外阴管上方,释放酪胺和神经肽,这些物质通过反馈来抑制产卵。我们之前已经表明,uv1细胞在产卵过程中会发生机械变形,从而驱动uv1细胞内的钙瞬变。然而,产卵回路活动、外阴开口和/或卵的释放是否触发uv1细胞的钙活动尚不清楚。在这里,我们表明uv1细胞直接对机械激活作出反应。即使在无菌动物中,通过光遗传学刺激外阴肌肉,在肌肉收缩后也会触发uv1细胞的钙活动。用玻璃探针直接抵着虫体表皮进行机械刺激会触发强烈的uv1细胞钙活动,类似于产卵时观察到的情况。uv1细胞的直接机械激活不需要产卵回路中的其他细胞、突触或肽能神经传递,也不需要瞬时受体电位香草酸型通道和压电通道。EGL - 19 L型钙通道,而不是P/Q/N型或雷诺丁受体钙通道,在机械激活后促进uv1细胞的钙活动。L型通道还促进了整个外阴的uv1细胞的协同激活,这表明对一个uv1细胞的机械刺激会交叉激活另一个uv1细胞。我们的研究结果展示了像uv1这样的神经内分泌细胞如何报告组织变形和肌肉收缩的力学情况,从而促进对外周回路的反馈以协调行为。

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