首页> 外文期刊>The journal of pain: official journal of the American Pain Society >Molecular Signatures of Mouse TRPV1-Lineage Neurons Revealed by RNA-Seq Transcriptome Analysis
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Molecular Signatures of Mouse TRPV1-Lineage Neurons Revealed by RNA-Seq Transcriptome Analysis

机译:RNA序列转录组分析揭示了小鼠TRPV1谱系神经元的分子特征。

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Disorders of pain neural systems are frequently chronic and, when recalcitrant to treatment, can severely degrade the quality of life. The pain pathway begins with sensory neurons in dorsal root or trigeminal ganglia, and the neuronal subpopulations that express the transient receptor potential cation channel, subfamily V. member 1 (TRPV1) ion channel transduce sensations of painful heat and inflammation and play a fundamental role in clinical pain arising from cancer and arthritis. In the present study, we elucidate the complete transcriptomes of neurons from the TRPV1 lineage and a non-TRPV1 neuroglial population in sensory ganglia through the combined application of next-gen deep RNA-Seq, genetic neuronal labeling with fluorescence-activated cell sorting, or neuron-selective chemoablation. RNA-Seq accurately quantitates gene expression, a difficult parameter to determine with most other methods, especially for very low and very high expressed genes. Differentially expressed genes are present at every level of cellular function from the nucleus to the plasma membrane. We identified many ligand receptor pairs in the TRPV1 population, suggesting that autonomous presynaptic regulation may be a major regulatory mechanism in nociceptive neurons. The data define, in a quantitative, cell population-specific fashion, the molecular signature of a distinct and clinically important group of pain-sensing neurons and provide an overall framework for understanding the transcriptome of TRPV1 nociceptive neurons.
机译:疼痛神经系统疾病通常是慢性疾病,如果对治疗不满意,会严重降低生活质量。疼痛途径始于背根或三叉神经节中的感觉神经元,表达瞬时受体电位阳离子通道亚家族V的神经元亚群。成员1(TRPV1)离子通道转导疼痛热和炎症的感觉,并在由癌症和关节炎引起的临床疼痛。在本研究中,我们通过结合应用下一代深层RNA-Seq,遗传神经元标记和荧光激活细胞分选技术,阐明了感觉神经节中TRPV1谱系和非TRPV1神经胶质群体的神经元的完整转录组。神经元选择性化学消融。 RNA-Seq可以准确定量基因表达,这是大多数其他方法难以确定的参数,尤其是对于极低和极高表达的基因而言。从细胞核到质膜的细胞功能的每个水平都存在差异表达的基因。我们在TRPV1人群中发现了许多配体受体对,提示自主突触前调节可能是伤害性神经元的主要调节机制。数据以定量的,细胞群体特异性的方式定义了一组独特且具有临床意义的痛觉神经元的分子标记,并为理解TRPV1伤害性神经元的转录组提供了总体框架。

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