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海胆胚胎中的骨骼形态发生:外胚层衍生信号对初级间充质基因表达和骨骼杆生长的调控。

Skeletal morphogenesis in the sea urchin embryo: regulation of primary mesenchyme gene expression and skeletal rod growth by ectoderm-derived cues.

作者信息

Guss K A, Ettensohn C A

机构信息

Department of Biological Sciences, Center for Light Microscope Imaging and Biotechnology, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Development. 1997 May;124(10):1899-908. doi: 10.1242/dev.124.10.1899.

Abstract

The skeleton of the sea urchin embryo is synthesized by the primary mesenchyme cells (PMCs). Previous studies have shown that local interactions between PMCs and the neighboring ectoderm regulate several aspects of skeletal morphogenesis, including PMC distribution in the blastocoel, the size of the skeleton and its branching pattern. In the present study, we have further examined the regulation of skeletogenesis by the ectoderm. We generated a 'rate map' of skeletal growth, which revealed stereotypical changes in the rates at which specific skeletal elements elongate during development. We showed that three transcripts encoding PMC-specific gene products known to be involved in the synthesis of the skeleton exhibited dynamic, spatially regulated patterns of expression within the PMC syncytium. All three gene products showed high levels of expression at sites of skeletal rod growth, although the specific patterns varied among the genes. We present direct evidence, based upon cell transplantation experiments, that the expression of one of these genes, SM30, is responsive to local, ectoderm-derived cues. Based upon our studies, we suggest that short-range signals from different ectodermal territories may regulate the expression of PMC-specific gene products that are rate-limiting in skeletal biosynthesis, thereby locally influencing skeletal rod growth.

摘要

海胆胚胎的骨骼由初级间充质细胞(PMC)合成。先前的研究表明,PMC与相邻外胚层之间的局部相互作用调节骨骼形态发生的多个方面,包括PMC在囊胚腔中的分布、骨骼的大小及其分支模式。在本研究中,我们进一步研究了外胚层对骨骼发生的调节作用。我们绘制了骨骼生长的“速率图”,该图揭示了特定骨骼元素在发育过程中伸长速率的典型变化。我们发现,三种编码已知参与骨骼合成的PMC特异性基因产物的转录本,在PMC合胞体内呈现出动态的、空间调节的表达模式。尽管这三种基因产物的具体模式各不相同,但它们在骨骼杆生长部位均表现出高水平的表达。基于细胞移植实验,我们提供了直接证据,证明其中一个基因SM30的表达对外胚层来源的局部信号有反应。基于我们的研究,我们认为来自不同外胚层区域的短程信号可能调节骨骼生物合成中起限速作用的PMC特异性基因产物的表达,从而局部影响骨骼杆的生长。

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