Neuronal fate acquisition and specification: time for a change.

Neuronal fate acquisition and specification: time for a change.
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神经元命运的获得和规范:改变的时候到了。

DOI:
10.1016/j.conb.2020.12.006
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发表时间:
2021-03
影响因子:
5.7
通讯作者:
Vanderhaeghen P
Vanderhaeghen P
中科院分区:
医学2区
文献类型:
--
作者:
Bonnefont J;Vanderhaeghen P

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在胚胎发育期间,神经干细胞/祖细胞通过内在和外在信号的组合产生数百种不同类型的细胞。最近在小鼠和人类皮质神经发生中获得的数据为这种相互作用以及它如何随着时间演变提供了新的观点,无论是在神经干细胞经历的不可逆转的细胞命运转变为神经元期间,还是通过能力的逐渐时间变化导致共同干细胞库中神经元多样性的增加。在每种情况下,时间变化都是细胞内状态和细胞外信号因子之间的动态平衡的结果。潜在的机制大多是跨物种保守的,但一些在人类皮质发生中显示出独特的特征,从而将神经发生的时间特征与人类大脑进化联系起来。
During embryonic development, neural stem/progenitor cells generate hundreds of different cell types through the combination of intrinsic and extrinsic cues. Recent data obtained in mouse and human cortical neurogenesis provide novel views about this interplay and how it evolves with time, whether during irreversible cell fate transitions that neural stem cells undergo to become neurons, or through gradual temporal changes of competence that lead to increased neuronal diversity from a common stem cell pool. In each case the temporal changes result from a dynamic balance between intracellular states and extracellular signalling factors. The underlying mechanisms are mostly conserved across species, but some display unique features in human corticogenesis, thereby linking temporal features of neurogenesis and human brain evolution.
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