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Neural progenitor cells and their role in the development and evolutionary expansion of the neocortex

新皮层 祖细胞 生物 祖细胞 神经干细胞 转录组 干细胞 神经发生 细胞生物学 神经科学 基因 遗传学 基因表达
作者
Takashi Namba,Wieland Β. Huttner
出处
期刊:Wiley Interdisciplinary Reviews-Developmental Biology [Wiley]
卷期号:6 (1) 被引量:120
标识
DOI:10.1002/wdev.256
摘要

The evolutionary expansion of the mammalian brain, notably the neocortex, provides a platform for the higher cognitive abilities that characterize humans. Cortical expansion is accompanied by increased folding of the pial surface, which gives rise to a gyrencephalic (folded) rather than lissencephalic (unfolded) neocortex. This expansion reflects the prolonged and increased proliferation of neural stem and progenitor cells ( NPCs ). Distinct classes of NPCs can be distinguished based on either cell biological criteria (apical progenitors [ APs ], basal progenitors [ BPs ]) or lineage (primary progenitors and secondary progenitors). Cortical expansion in development and evolution is linked to an increased abundance and proliferative capacity of BPs , notably basal radial glial cells, a recently characterized type of secondary progenitor derived from apical radial glial cells, the primary progenitors. To gain insight into the molecular basis underlying the prolonged and increased proliferation of NPCs and in particular BPs , comparative genomic and transcriptomic approaches, mostly for human versus mouse, have been employed and applied to specific NPC types and subpopulations. These have revealed two principal sets of molecular changes. One concerns differences in the expression of common genes between species with different degrees of cortical expansion. The other comprises human‐specific genes or genomic regulatory sequences. Various systems that allow functional testing of these genomic and gene expression differences between species have emerged, including transient and stable transgenesis, genome editing, cerebral organoids, and organotypic slice cultures. These provide future avenues for uncovering the molecular basis of cortical expansion. WIREs Dev Biol 2017, 6:e256. doi: 10.1002/wdev.256 This article is categorized under: Nervous System Development > Vertebrates: Regional Development Comparative Development and Evolution > Organ System Comparisons Between Species Comparative Development and Evolution > Evolutionary Novelties
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