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感觉区室中受体的经验依赖性重新配置调节神经元可塑性。

Experience-dependent reconfiguration of receptors at a sensory compartment regulates neuronal plasticity.

作者信息

Harris Nathan, Dutta Priya, Krishnan Nikhila, Nurrish Stephen, Sengupta Piali

机构信息

Department of Biology, Brandeis University, Waltham, MA 02454.

Current address: Neuroscience Institute, Georgia State University, Atlanta, GA 30303.

出版信息

bioRxiv. 2025 Aug 13:2025.08.13.670147. doi: 10.1101/2025.08.13.670147.

Abstract

Neurons continuously adjust their properties as a function of experience. Precise modulation of neuronal responses is achieved by multiple cellular mechanisms that operate over a range of timescales. Primary sensory neurons rapidly adapt their sensitivities via posttranslational mechanisms including regulated trafficking of sensory molecules but also alter their transcriptional profiles on longer timescales to adapt to persistent sensory stimuli. How diverse transcriptional and posttranscriptional pathways are coordinated in individual sensory neurons to accurately adjust their functions and drive behavioral plasticity is unclear. Here we show that temperature experience modulates both transcription and trafficking of thermoreceptors on different timescales in the AFD thermosensory neurons to regulate response plasticity. Expression of the PY motif-containing adaptor protein (PYT-1) as well as the GCY-18 warm temperature-responsive guanylyl cyclase thermoreceptor is transcriptionally upregulated in AFD upon a temperature upshift. We find that as GCY-18 begins to accumulate at the AFD sensory endings, the GCY-23 cooler temperature-responsive thermoreceptor exhibits altered subcellular localization and increased retrograde trafficking, thereby increasing the functional GCY-18 to GCY-23 ratio in the AFD sensory compartment. Altered GCY-23 localization and trafficking requires PYT-1-dependent endocytosis, and we show that PYT-1-mediated modulation of the GCY-18 to GCY-23 protein ratio at the AFD sensory endings is necessary to shift the AFD response threshold towards warmer values following the temperature upshift. Our results describe a mechanism by which transcriptional and posttranscriptional mechanisms are temporally coordinated across sensory receptors to fine tune experience-dependent plasticity in the response of a single sensory neuron type.

摘要

神经元会根据经验不断调整其特性。神经元反应的精确调节是通过多种细胞机制实现的,这些机制在一系列时间尺度上发挥作用。初级感觉神经元通过包括调节感觉分子运输在内的翻译后机制迅速调整其敏感性,但也会在更长的时间尺度上改变其转录谱,以适应持续的感觉刺激。目前尚不清楚在单个感觉神经元中,多种转录和转录后途径是如何协调以精确调整其功能并驱动行为可塑性的。在这里,我们表明温度体验在不同时间尺度上调节AFD热感觉神经元中热感受器的转录和运输,以调节反应可塑性。在温度升高时,AFD中含PY基序的衔接蛋白(PYT-1)以及GCY-18温暖温度响应型鸟苷酸环化酶热感受器的表达在转录水平上上调。我们发现,随着GCY-18开始在AFD感觉末梢积累,GCY-23较冷温度响应型热感受器表现出亚细胞定位改变和逆行运输增加,从而增加了AFD感觉区室中功能性GCY-18与GCY-23的比例。GCY-23定位和运输的改变需要PYT-1依赖的内吞作用,并且我们表明,PYT-1介导的AFD感觉末梢处GCY-18与GCY-23蛋白比例的调节对于在温度升高后将AFD反应阈值向更温暖的值转变是必要的。我们的结果描述了一种机制,通过该机制转录和转录后机制在感觉受体之间在时间上进行协调,以微调单个感觉神经元类型反应中依赖于经验的可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc4e/12377508/c1a7c019c369/nihpp-2025.08.13.670147v1-f0001.jpg

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