首页> 外文期刊>The Journal of Comparative Neurology >Diverse spinal commissural neuron populations revealed by fate mapping and molecular profiling using a novel Robo3 Robo3 Cre Cre Cre mouse
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Diverse spinal commissural neuron populations revealed by fate mapping and molecular profiling using a novel Robo3 Robo3 Cre Cre Cre mouse

机译:使用新颖的Robo3 Robo3 Cre Cre Cre Cre Cre小鼠的命运映射和分子分析揭示了各种脊柱舱内群体

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Abstract The two sides of the nervous system coordinate and integrate information via commissural neurons, which project axons across the midline. Commissural neurons in the spinal cord are a highly heterogeneous population of cells with respect to their birthplace, final cell body position, axonal trajectory, and neurotransmitter phenotype. Although commissural axon guidance during development has been studied in great detail, neither the developmental origins nor the mature phenotypes of commissural neurons have been characterized comprehensively, largely due to lack of selective genetic access to these neurons. Here, we generated mice expressing Cre recombinase from the Robo3 locus specifically in commissural neurons. We used Robo3 Cre mice to characterize the transcriptome and various origins of developing commissural neurons, revealing new details about their extensive heterogeneity in molecular makeup and developmental lineage. Further, we followed the fate of commissural neurons into adulthood, thereby elucidating their settling positions and molecular diversity and providing evidence for possible functions in various spinal cord circuits. Our studies establish an important genetic entry point for further analyses of commissural neuron development, connectivity, and function.
机译:摘要神经系统的双方通过船长神经元协调并整合信息,这些信息在中线投射轴突。脊髓中的未良性细胞群具有高度异质的细胞,相对于其出生地,最终细胞身体位置,轴突轨迹和神经递质表型。尽管在开发过程中的船舶轴突引导得到了详细的研究,但既不是发育起源也不表现出全面地表征着船舶神经元的成熟表型,主要是由于缺乏对这些神经元的选择性遗传进入。在这里,我们在小鼠中生成表达CRE重组酶的小鼠,特别是在偶然神经元中的ROBO3基因座。我们使用ROBO3 CRE小鼠来表征转录组和开发unding神经元的各种起源,揭示了他们在分子化妆和发育谱系中的广泛异质性的新细节。此外,我们遵循通勤神经元的命运进入成年期,从而阐明它们的沉降位置和分子多样性,并提供各种脊髓电路中可能的功能的证据。我们的研究建立了一个重要的遗传入学点,用于进一步分析船舶神经元发育,连通性和功能。

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