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Molecular basis for catecholaminergic neuron diversity

机译:儿茶酚胺能神经元多样性的分子基础

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摘要

Catecholaminergic neurons control diverse cognitive, motor, and endocrine functions and are associated with multiple psychiatric and neurodegenerative disorders. We present global gene-expression profiles that define the four major classes of dopaminergic (DA) and noradrenergic neurons in the brain. Hypothalamic DA neurons and noradrenergic neurons in the locus coeruleus display distinct group-specific signatures of transporters, channels, transcription, plasticity, axon-guidance, and survival factors. In contrast, the transcriptomes of midbrain DA neurons of the substantia nigra and the ventral tegmental area are closely related with <1% of differentially expressed genes. Transcripts implicated in neural plasticity and survival are enriched in ventral tegmental area neurons, consistent with their role in schizophrenia and addiction and their decreased vulnerability in Parkinson's disease. The molecular profiles presented provide a basis for understanding the common and population-specific properties of catecholaminergic neurons and will facilitate the development of selective drugs.
机译:儿茶酚胺能神经元控制多种认知,运动和内分泌功能,并与多种精神病和神经退行性疾病有关。我们提出了全球基因表达谱,定义了大脑中多巴胺能(DA)和去甲肾上腺素能神经元的四个主要类别。下丘脑轨迹中的下丘脑DA神经元和去甲肾上腺素能神经元显示出转运蛋白,通道,转录,可塑性,轴突指导和存活因子的不同组特异性特征。相反,黑质和腹侧被盖区的中脑DA神经元的转录组与差异表达基因的<1%密切相关。涉及神经可塑性和存活的转录本在腹侧被盖区神经元中富集,与其在精神分裂症和成瘾中的作用以及在帕金森氏病中的脆弱性降低相一致。提出的分子谱为理解儿茶酚胺能神经元的共同特性和特定人群特性提供了基础,并将促进选择性药物的开发。

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