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通过前索板发出的信号对前脑/中脑边界处神经元簇大小进行选择性控制。

Selective control of neuronal cluster size at the forebrain/midbrain boundary by signaling from the prechordal plate.

作者信息

Tallafuss Alexandra, Adolf Birgit, Bally-Cuif Laure

机构信息

Zebrafish Neurogenetics Junior Research Group, Institute of Virology, Technical University-Munich, Munich, Germany.

出版信息

Dev Dyn. 2003 Aug;227(4):524-35. doi: 10.1002/dvdy.10329.

Abstract

Within the vertebrate embryonic neural plate, the first neuronal clusters often differentiate at the border of patterning identities. Whether the information inherent in the intersection of patterning identities alone controls all aspects of neuronal cluster development (location, identity, and size) is unknown. Here, we focus on the cluster of the medial longitudinal fascicle (nMLF) and posterior commissure (nPC), located at the forebrain/midbrain (fore/mid) boundary, to address this issue. We first identify expression of the transcription factor Six3 as a common and distinct molecular signature of nMLF and nPC neurons in zebrafish, and we use this marker to monitor mechanisms controlling the location and number of nMLF/nPC neurons. We demonstrate that six3 expression is induced at the fore/mid boundary in pax2.1/no-isthmus and smoothened/slow muscle omitted mutants, where identities adjacent to the six3 cluster are altered; however, in these mutants, the subpopulation of six3-positive cells located within the mispatterned territory is reduced. These results show that induction of the six3 cluster is triggered by the information derived from the intersection in patterning identities alone, whereas correct cluster size depends, in a modular manner, on the identities themselves. The size of the six3 cluster is also controlled independently of neural tube patterning: we demonstrate that the prechordal plate (PCP) is impaired in mixer/bonnie and clyde mutants and that this phenotype secondarily results in an increased production of six3-positive cells at the fore/mid boundary, without correlatively affecting patterning in this area. Thus, a signaling process originating from the PCP distinguishes between neural patterning and the control of six3 cluster size at the fore/mid junction in vivo. Together, our results suggest that a combination of patterning-related and -unrelated mechanisms specifically controls the size of individual early neuronal clusters within the anterior neural plate.

摘要

在脊椎动物胚胎神经板内,首批神经元簇通常在模式身份边界处分化。仅模式身份交集所固有的信息是否控制神经元簇发育的所有方面(位置、身份和大小)尚不清楚。在这里,我们聚焦于位于前脑/中脑(前/中)边界的内侧纵束(nMLF)和后连合(nPC)簇,以解决这个问题。我们首先确定转录因子Six3的表达是斑马鱼中nMLF和nPC神经元共同且独特的分子特征,并且我们使用这个标记来监测控制nMLF/nPC神经元位置和数量的机制。我们证明,在pax2.1/无峡部和平滑化/慢肌缺失突变体中,Six3表达在前/中边界被诱导,其中与Six3簇相邻的身份发生了改变;然而,在这些突变体中,位于错误模式区域内的Six3阳性细胞亚群减少。这些结果表明,Six3簇的诱导仅由模式身份交集中衍生的信息触发,而正确的簇大小以模块化方式取决于身份本身。Six3簇的大小也独立于神经管模式形成而受到控制:我们证明,在mixer/bonnie和clyde突变体中,脊索前板(PCP)受损,并且这种表型继而导致在前/中边界Six3阳性细胞的产生增加,而不会相应地影响该区域的模式形成。因此,源自PCP的信号传导过程在体内区分神经模式形成和前/中交界处Six3簇大小的控制。总之,我们的结果表明,模式相关和无关机制的组合特异性地控制前神经板内单个早期神经元簇的大小。

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