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Chx10通过两种不同的基因抑制模式巩固V2a中间神经元身份。

Chx10 Consolidates V2a Interneuron Identity through Two Distinct Gene Repression Modes.

作者信息

Clovis Yoanne M, Seo So Yeon, Kwon Ji-Sun, Rhee Jennifer C, Yeo Sujeong, Lee Jae W, Lee Seunghee, Lee Soo-Kyung

机构信息

Pediatric Neuroscience Research Program, Papé Family Pediatric Research Institute, Department of Pediatrics, Oregon Health and Science University, Portland, OR 97239, USA.

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul 151-742, Korea.

出版信息

Cell Rep. 2016 Aug 9;16(6):1642-1652. doi: 10.1016/j.celrep.2016.06.100. Epub 2016 Jul 28.

Abstract

During development, two cell types born from closely related progenitor pools often express identical transcriptional regulators despite their completely distinct characteristics. This phenomenon implies the need for a mechanism that operates to segregate the identities of the two cell types throughout differentiation after initial fate commitment. To understand this mechanism, we investigated the fate specification of spinal V2a interneurons, which share important developmental genes with motor neurons (MNs). We demonstrate that the paired homeodomain factor Chx10 functions as a critical determinant for V2a fate and is required to consolidate V2a identity in postmitotic neurons. Chx10 actively promotes V2a fate, downstream of the LIM-homeodomain factor Lhx3, while concomitantly suppressing the MN developmental program by preventing the MN-specific transcription complex from binding and activating MN genes. This dual activity enables Chx10 to effectively separate the V2a and MN pathways. Our study uncovers a widely applicable gene regulatory principle for segregating related cell fates.

摘要

在发育过程中,源自密切相关祖细胞池的两种细胞类型尽管具有完全不同的特征,但通常会表达相同的转录调节因子。这种现象意味着需要一种机制,在初始命运确定后,在整个分化过程中发挥作用来区分这两种细胞类型的身份。为了理解这种机制,我们研究了脊髓V2a中间神经元的命运特化,它们与运动神经元(MNs)共享重要的发育基因。我们证明,配对的同源结构域因子Chx10作为V2a命运的关键决定因素,是在有丝分裂后神经元中巩固V2a身份所必需的。Chx10在LIM同源结构域因子Lhx3的下游积极促进V2a命运,同时通过阻止MN特异性转录复合物结合并激活MN基因来抑制MN发育程序。这种双重活性使Chx10能够有效地分离V2a和MN途径。我们的研究揭示了一种广泛适用的基因调控原则,用于区分相关细胞命运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf8f/8109239/ae145c97021d/nihms-806823-f0002.jpg

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