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嗅觉感觉神经元对 GPCR 身份和活性的转录适应。

Transcriptional adaptation of olfactory sensory neurons to GPCR identity and activity.

机构信息

Department of Genetics and Evolution, Faculty of Sciences, University of Geneva, Geneva, Switzerland.

Department of Basic Neurosciences, Faculty of Medicine, University of Geneva, Geneva, Switzerland.

出版信息

Nat Commun. 2022 May 25;13(1):2929. doi: 10.1038/s41467-022-30511-4.

Abstract

In mammals, chemoperception relies on a diverse set of neuronal sensors able to detect chemicals present in the environment, and to adapt to various levels of stimulation. The contribution of endogenous and external factors to these neuronal identities remains to be determined. Taking advantage of the parallel coding lines present in the olfactory system, we explored the potential variations of neuronal identities before and after olfactory experience. We found that at rest, the transcriptomic profiles of mouse olfactory sensory neuron populations are already divergent, specific to the olfactory receptor they express, and are associated with the sequence of these latter. These divergent profiles further evolve in response to the environment, as odorant exposure leads to reprogramming via the modulation of transcription. These findings highlight a broad range of sensory neuron identities that are present at rest and that adapt to the experience of the individual, thus adding to the complexity and flexibility of sensory coding.

摘要

在哺乳动物中,化学感受依赖于一组多样化的神经元传感器,这些传感器能够检测环境中存在的化学物质,并适应各种刺激水平。内源性和外源性因素对这些神经元特性的贡献仍有待确定。利用嗅觉系统中存在的并行编码线,我们探索了嗅觉体验前后神经元特性的潜在变化。我们发现,在休息时,小鼠嗅觉感觉神经元群体的转录组特征已经存在分歧,特定于它们表达的嗅觉受体,并与这些受体的序列相关。这些不同的特征进一步响应环境变化,因为气味暴露会通过转录调节导致重编程。这些发现强调了在休息时存在的广泛的感觉神经元特性,这些特性会适应个体的经验,从而增加了感觉编码的复杂性和灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7a0/9132991/1ba33782845e/41467_2022_30511_Fig1_HTML.jpg

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