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轴中胚层对腹侧中线细胞的差异模式形成由骨形态发生蛋白7(BMP7)和脊索蛋白调控。

Differential patterning of ventral midline cells by axial mesoderm is regulated by BMP7 and chordin.

作者信息

Dale K, Sattar N, Heemskerk J, Clarke J D, Placzek M, Dodd J

机构信息

Department of Physiology and Cellular Biophysics and Center for Neurobiology and Behavior, Columbia University, New York, USA.

出版信息

Development. 1999 Jan;126(2):397-408. doi: 10.1242/dev.126.2.397.

DOI:10.1242/dev.126.2.397
PMID:9847252
Abstract

Ventral midline cells in the neural tube have distinct properties at different rostrocaudal levels, apparently in response to differential signalling by axial mesoderm. Floor plate cells are induced by sonic hedgehog (SHH) secreted from the notochord whereas ventral midline cells of the rostral diencephalon (RDVM cells) appear to be induced by the dual actions of SHH and bone morphogenetic protein 7 (BMP7) from prechordal mesoderm. We have examined the cellular and molecular events that govern the program of differentiation of RDVM cells under the influence of the axial mesoderm. By fate mapping, we show that prospective RDVM cells migrate rostrally within the neural plate, passing over rostral notochord before establishing register with prechordal mesoderm at stage 7. Despite the co-expression of SHH and BMP7 by rostral notochord, prospective RDVM cells appear to be specified initially as caudal ventral midline neurectodermal cells and to acquire RDVM properties only at stage 7. We provide evidence that the signalling properties of axial mesoderm over this period are regulated by the BMP antagonist, chordin. Chordin is expressed throughout the axial mesoderm as it extends, but is downregulated in prechordal mesoderm coincident with the onset of RDVM cell differentiation. Addition of chordin to conjugate explant cultures of prechordal mesoderm and neural tissue prevents the rostralization of ventral midline cells by prechordal mesoderm. Chordin may thus act to refine the patterning of the ventral midline along the rostrocaudal axis.

摘要

神经管中的腹侧中线细胞在不同的头尾水平具有不同的特性,这显然是对轴向中胚层不同信号传导的反应。底板细胞由脊索分泌的音猬因子(SHH)诱导,而端脑前部腹侧中线细胞(RDVM细胞)似乎是由来自脊索前中胚层的SHH和骨形态发生蛋白7(BMP7)的双重作用诱导的。我们研究了在轴向中胚层影响下控制RDVM细胞分化程序的细胞和分子事件。通过命运图谱,我们发现预期的RDVM细胞在神经板内向前迁移,在第7阶段与脊索前中胚层建立对齐之前越过端脑前部的脊索。尽管端脑前部脊索同时表达SHH和BMP7,但预期的RDVM细胞最初似乎被指定为尾侧腹侧中线神经外胚层细胞,并且仅在第7阶段获得RDVM特性。我们提供的证据表明,在此期间轴向中胚层的信号特性受BMP拮抗剂脊索蛋白调节。脊索蛋白在整个延伸的轴向中胚层中表达,但在RDVM细胞分化开始时在脊索前中胚层中下调。将脊索蛋白添加到脊索前中胚层和神经组织的联合外植体培养物中可防止脊索前中胚层使腹侧中线细胞头侧化。因此,脊索蛋白可能起到细化腹侧中线沿头尾轴的模式形成的作用。

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