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SOX6在新皮质发育过程中控制背侧祖细胞身份和中间神经元多样性。

SOX6 controls dorsal progenitor identity and interneuron diversity during neocortical development.

作者信息

Azim Eiman, Jabaudon Denis, Fame Ryann M, Macklis Jeffrey D

机构信息

Massachusetts General Hospital-Harvard Medical School Center for Nervous System Repair, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Nat Neurosci. 2009 Oct;12(10):1238-47. doi: 10.1038/nn.2387. Epub 2009 Aug 5.

Abstract

The neuronal diversity of the CNS emerges largely from controlled spatial and temporal segregation of cell type-specific molecular regulators. We found that the transcription factor SOX6 controls the molecular segregation of dorsal (pallial) from ventral (subpallial) telencephalic progenitors and the differentiation of cortical interneurons, regulating forebrain progenitor and interneuron heterogeneity. During corticogenesis in mice, SOX6 and SOX5 were largely mutually exclusively expressed in pallial and subpallial progenitors, respectively, and remained mutually exclusive in a reverse pattern in postmitotic neuronal progeny. Loss of SOX6 from pallial progenitors caused their inappropriate expression of normally subpallium-restricted developmental controls, conferring mixed dorsal-ventral identity. In postmitotic cortical interneurons, loss of SOX6 disrupted the differentiation and diversity of cortical interneuron subtypes, analogous to SOX5 control over cortical projection neuron development. These data indicate that SOX6 is a central regulator of both progenitor and cortical interneuron diversity during neocortical development.

摘要

中枢神经系统的神经元多样性很大程度上源于细胞类型特异性分子调节因子在空间和时间上的受控分离。我们发现转录因子SOX6控制着端脑背侧(皮质)祖细胞与腹侧(皮质下)祖细胞的分子分离以及皮质中间神经元的分化,调节前脑祖细胞和中间神经元的异质性。在小鼠皮质发生过程中,SOX6和SOX5分别在皮质和皮质下祖细胞中大量相互排斥表达,并在有丝分裂后神经元后代中以相反模式保持相互排斥。皮质祖细胞中SOX6的缺失导致它们不恰当地表达通常仅限于皮质下的发育控制因子,赋予其混合的背腹身份。在有丝分裂后的皮质中间神经元中,SOX6的缺失破坏了皮质中间神经元亚型的分化和多样性,类似于SOX5对皮质投射神经元发育的控制。这些数据表明,SOX6是新皮质发育过程中祖细胞和皮质中间神经元多样性的核心调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68be/2903203/d536a0adc965/nihms134256f1.jpg

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