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肌肉前体细胞分化过程中关键生理过程的时空区隔。

Spatiotemporal compartmentalization of key physiological processes during muscle precursor differentiation.

机构信息

Stowers Institute for Medical Research, Kansas City, MO 64110, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Mar 2;107(9):4224-9. doi: 10.1073/pnas.0909375107. Epub 2010 Feb 16.

DOI:10.1073/pnas.0909375107
PMID:20160088
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2840138/
Abstract

The development of multicellular organisms is controlled by transcriptional networks. Understanding the role of these networks requires a full understanding of transcriptome regulation during embryogenesis. Several microarray studies have characterized the temporal evolution of the transcriptome during development in different organisms [Wang QT, et al. (2004) Dev Cell 6:133-144; Furlong EE, Andersen EC, Null B, White KP, Scott MP (2001) Science 293:1629-1633; Mitiku N, Baker JC (2007) Dev Cell 13:897-907]. In all cases, however, experiments were performed on whole embryos, thus averaging gene expression among many different tissues. Here, we took advantage of the local synchrony of the differentiation process in the paraxial mesoderm. This approach provides a unique opportunity to study the systems-level properties of muscle differentiation. Using high-resolution, spatiotemporal profiling of the early stages of muscle development in the zebrafish embryo, we identified a major reorganization of the transcriptome taking place in the presomitic mesoderm. We further show that the differentiation process is associated with a striking modular compartmentalization of the transcription of essential components of cellular physiological programs. Particularly, we identify a tight segregation of cell cycle/DNA metabolic processes and translation/oxidative metabolism at the tissue level, highly reminiscent of the yeast metabolic cycle. These results should expand more investigations into the developmental control of metabolism.

摘要

多细胞生物的发育受转录网络控制。要了解这些网络的作用,需要全面理解胚胎发生过程中转录组的调控。几项微阵列研究已经描述了不同生物体中发育过程中转录组的时间演变[Wang QT, 等。(2004)Dev Cell 6:133-144; Furlong EE, Andersen EC, Null B, White KP, Scott MP (2001)Science 293:1629-1633; Mitiku N, Baker JC (2007)Dev Cell 13:897-907]。然而,在所有情况下,实验都是在整个胚胎上进行的,因此在许多不同的组织中平均了基因表达。在这里,我们利用了轴向中胚层分化过程中的局部同步性。这种方法为研究肌肉分化的系统级特性提供了独特的机会。我们利用斑马鱼胚胎中肌肉发育早期的高分辨率、时空分析,鉴定了在体节前中胚层中发生的主要转录组重排。我们进一步表明,分化过程与细胞生理程序的关键组成部分的转录的显著模块化分区有关。特别是,我们在组织水平上发现了细胞周期/DNA 代谢过程和翻译/氧化代谢之间的紧密分离,这与酵母代谢周期非常相似。这些结果应该会促进对代谢的发育控制的更多研究。

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