Suppr超能文献

触觉受体末端器官的神经支配和功能需要感觉神经元表达转录因子 Meis2。

Touch receptor end-organ innervation and function require sensory neuron expression of the transcription factor Meis2.

机构信息

Institute for Neurosciences of Montpellier, University of Montpellier, INSERM U 1298, Montpellier, France.

Department of Neuroscience, Max-Delbrück Centre for Molecular Medicine, Berlin-Buch, Germany.

出版信息

Elife. 2024 Feb 22;12:RP89287. doi: 10.7554/eLife.89287.

Abstract

Touch sensation is primarily encoded by mechanoreceptors, called low-threshold mechanoreceptors (LTMRs), with their cell bodies in the dorsal root ganglia. Because of their great diversity in terms of molecular signature, terminal endings morphology, and electrophysiological properties, mirroring the complexity of tactile experience, LTMRs are a model of choice to study the molecular cues differentially controlling neuronal diversification. While the transcriptional codes that define different LTMR subtypes have been extensively studied, the molecular players that participate in their late maturation and in particular in the striking diversity of their end-organ morphological specialization are largely unknown. Here we identified the TALE homeodomain transcription factor Meis2 as a key regulator of LTMRs target-field innervation in mice. is specifically expressed in cutaneous LTMRs, and its expression depends on target-derived signals. While LTMRs lacking survived and are normally specified, their end-organ innervations, electrophysiological properties, and transcriptome are differentially and markedly affected, resulting in impaired sensory-evoked behavioral responses. These data establish as a major transcriptional regulator controlling the orderly formation of sensory neurons innervating peripheral end organs required for light touch.

摘要

触觉主要由机械感受器编码,称为低阈值机械感受器 (LTMR),其细胞体位于背根神经节。由于其在分子特征、末端形态和电生理特性方面具有极大的多样性,反映了触觉体验的复杂性,因此 LTMR 是研究分子线索差异控制神经元多样化的首选模型。虽然已经广泛研究了定义不同 LTMR 亚型的转录代码,但参与其晚期成熟的分子参与者,特别是其终末器官形态特化的惊人多样性的分子参与者在很大程度上仍是未知的。在这里,我们确定 TALE 同源域转录因子 Meis2 是小鼠 LTMR 靶场神经支配的关键调节因子。 在皮肤 LTMR 中特异性表达,并依赖于靶标来源的信号。虽然缺乏 的 LTMR 存活且正常分化,但它们的终末器官神经支配、电生理特性和转录组受到不同程度的显著影响,导致感觉诱发的行为反应受损。这些数据确立了 作为一个主要的转录调节因子,控制着支配外围终末器官的感觉神经元的有序形成,这些终末器官是轻触所必需的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验