Literature DB >> 25734491

Single-cell analysis reveals transcriptional heterogeneity of neural progenitors in human cortex.

Matthew B Johnson1, Peter P Wang1, Kutay D Atabay1, Elisabeth A Murphy1, Ryan N Doan1, Jonathan L Hecht2, Christopher A Walsh3.   

Abstract

The human cerebral cortex depends for its normal development and size on a precisely controlled balance between self-renewal and differentiation of diverse neural progenitor cells. Specialized progenitors that are common in humans but virtually absent in rodents, called outer radial glia (ORG), have been suggested to be crucial to the evolutionary expansion of the human cortex. We combined progenitor subtype-specific sorting with transcriptome-wide RNA sequencing to identify genes enriched in human ORG, which included targets of the transcription factor neurogenin and previously uncharacterized, evolutionarily dynamic long noncoding RNAs. Activating the neurogenin pathway in ferret progenitors promoted delamination and outward migration. Finally, single-cell transcriptional profiling in human, ferret and mouse revealed more cells coexpressing proneural neurogenin targets in human than in other species, suggesting greater neuronal lineage commitment and differentiation of self-renewing progenitors. Thus, we find that the abundance of human ORG is paralleled by increased transcriptional heterogeneity of cortical progenitors.

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Year:  2015        PMID: 25734491      PMCID: PMC5568903          DOI: 10.1038/nn.3980

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  50 in total

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9.  Abundant occurrence of basal radial glia in the subventricular zone of embryonic neocortex of a lissencephalic primate, the common marmoset Callithrix jacchus.

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Journal:  Nature       Date:  2014-04-02       Impact factor: 49.962

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  119 in total

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Review 2.  Long non-coding RNAs in corticogenesis: deciphering the non-coding code of the brain.

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Review 4.  Single-cell analysis of diversity in human stem cell-derived neurons.

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Review 5.  Evolution of the Human Nervous System Function, Structure, and Development.

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Review 6.  Understanding development and stem cells using single cell-based analyses of gene expression.

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Review 7.  Modeling developmental neuropsychiatric disorders with iPSC technology: challenges and opportunities.

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8.  Classifying Drosophila Olfactory Projection Neuron Subtypes by Single-Cell RNA Sequencing.

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Review 9.  Enhancing our brains: Genomic mechanisms underlying cortical evolution.

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