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The Star-Nosed Mole Reveals Clues to the Molecular Basis of Mammalian Touch

机译:星鼻痣揭示了哺乳动物接触分子基础的线索

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摘要

Little is known about the molecular mechanisms underlying mammalian touch transduction. To identify novel candidate transducers, we examined the molecular and cellular basis of touch in one of the most sensitive tactile organs in the animal kingdom, the star of the star-nosed mole. Our findings demonstrate that the trigeminal ganglia innervating the star are enriched in tactile-sensitive neurons, resulting in a higher proportion of light touch fibers and lower proportion of nociceptors compared to the dorsal root ganglia innervating the rest of the body. We exploit this difference using transcriptome analysis of the star-nosed mole sensory ganglia to identify novel candidate mammalian touch and pain transducers. The most enriched candidates are also expressed in mouse somatosesensory ganglia, suggesting they may mediate transduction in diverse species and are not unique to moles. These findings highlight the utility of examining diverse and specialized species to address fundamental questions in mammalian biology.
机译:关于哺乳动物接触转导的分子机制知之甚少。为了识别新的候选换能器,我们检查了动物界中最敏感的触觉器官之一,即星鼻痣的恒星,触摸的分子和细胞基础。我们的发现表明,支配恒星的三叉神经节富含触觉敏感神经元,与支配身体其余部分的背根神经节相比,导致轻触纤维的比例更高,伤害感受器的比例更低。我们利用星鼻痣感觉神经节的转录组分析来利用这种差异,以鉴定出新的候选哺乳动物触觉和疼痛传感器。小鼠体细胞感觉神经节中也表达了最丰富的候选基因,这表明它们可能介导多种物种的转导,并且并非痣唯一。这些发现突显了检查各种特殊物种以解决哺乳动物生物学基本问题的实用性。

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