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Foxn4 和神经前体细胞因子对 Dll4-Notch 信号的非对称激活作用激活了 BMP/TGFβ 信号,从而在脊髓中特化 V2b 中间神经元。

Asymmetric activation of Dll4-Notch signaling by Foxn4 and proneural factors activates BMP/TGFβ signaling to specify V2b interneurons in the spinal cord.

机构信息

Center for Advanced Biotechnology and Medicine and Department of Pediatrics, Rutgers University-Robert Wood Johnson Medical School, 679 Hoes Lane West, Piscataway, NJ 08854, USA.

出版信息

Development. 2014 Jan;141(1):187-98. doi: 10.1242/dev.092536. Epub 2013 Nov 20.

Abstract

During development of the ventral spinal cord, the V2 interneurons emerge from p2 progenitors and diversify into two major subtypes, V2a and V2b, that play key roles in locomotor coordination. Dll4-mediated Notch activation in a subset of p2 precursors constitutes the crucial first step towards generating neuronal diversity in this domain. The mechanism behind the asymmetric Notch activation and downstream signaling events are, however, unknown at present. We show here that the Ascl1 and Neurog basic helix-loop-helix (bHLH) proneural factors are expressed in a mosaic pattern in p2 progenitors and that Foxn4 is required for setting and maintaining this expression mosaic. By binding directly to a conserved Dll4 enhancer, Foxn4 and Ascl1 activate Dll4 expression, whereas Neurog proteins prevent this effect, thereby resulting in asymmetric activation of Dll4 expression in V2 precursors expressing different combinations of proneural and Foxn4 transcription factors. Lineage tracing using the Cre-LoxP system reveals selective expression of Dll4 in V2a precursors, whereas Dll4 expression is initially excluded from V2b precursors. We provide evidence that BMP/TGFβ signaling is activated in V2b precursors and that Dll4-mediated Notch signaling is responsible for this activation. Using a gain-of-function approach and by inhibiting BMP/TGFβ signal transduction with pathway antagonists and RNAi knockdown, we further demonstrate that BMP/TGFβ signaling is both necessary and sufficient for V2b fate specification. Our data together thus suggest that the mosaic expression of Foxn4 and proneural factors may serve as the trigger to initiate asymmetric Dll4-Notch and subsequent BMP/TGFβ signaling events required for neuronal diversity in the V2 domain.

摘要

在脊髓腹侧发育过程中,V2 中间神经元由 p2 祖细胞产生,并分化为两个主要亚型,V2a 和 V2b,它们在运动协调中发挥关键作用。Dll4 介导的 Notch 激活在 p2 前体的一个亚群中构成了在该区域产生神经元多样性的关键第一步。然而,目前尚不清楚不对称 Notch 激活和下游信号事件的机制。我们在这里表明,Ascl1 和 Neurog 碱性螺旋-环-螺旋(bHLH)神经前体细胞因子在 p2 祖细胞中呈镶嵌模式表达,Foxn4 对于建立和维持这种表达镶嵌是必需的。Foxn4 和 Ascl1 通过直接结合到一个保守的 Dll4 增强子上,激活 Dll4 的表达,而 Neurog 蛋白则阻止这种效应,从而导致表达不同组合的神经前体细胞因子和 Foxn4 转录因子的 V2 前体中 Dll4 表达的不对称激活。使用 Cre-LoxP 系统进行的谱系追踪显示 Dll4 选择性表达在 V2a 前体中,而 Dll4 表达最初被排除在 V2b 前体之外。我们提供的证据表明,BMP/TGFβ 信号在 V2b 前体中被激活,并且 Dll4 介导的 Notch 信号负责这种激活。通过使用增益功能方法并通过使用途径拮抗剂和 RNAi 敲低抑制 BMP/TGFβ 信号转导,我们进一步证明了 BMP/TGFβ 信号对于 V2b 命运特化是必需的和充分的。我们的数据共同表明,Foxn4 和神经前体细胞因子的镶嵌表达可能作为触发不对称 Dll4-Notch 激活以及随后在 V2 区域中神经元多样性所需的 BMP/TGFβ 信号事件的触发。

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