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New Twists in Drosophila Cell Signaling

机译:果蝇细胞信号转导的新变化

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摘要

The discovery of a handful of conserved signaling pathways that dictate most aspects of embryonic and post-embryonic development of multicellular organisms has generated a universal view of animal development (Perrimon, N., Pitsouli, C., and Shilo, B. Z. (2012) Cold Spring Harb. Perspect. Biol. 4, a005975). Although we have at hand most of the “hardware” elements that mediate cell communication events that dictate cell fate choices, we are still far from a comprehensive mechanistic understanding of these processes. One of the next challenges entails an analysis of developmental signaling pathways from the cell biology perspective. Where in the cell does signaling take place, and how do general cellular machineries and structures contribute to the regulation of developmental signaling? Another challenge is to examine these signaling pathways from a quantitative perspective, rather than as crude on/off switches. This requires more precise measurements, and incorporation of the time element to generate a dynamic sequence instead of frozen snapshots of the process. The quantitative outlook also brings up the issue of precision, and the unknown mechanisms that buffer variability in signaling between embryos, to produce a robust and reproducible output. Although these issues are universal to all multicellular organisms, they can be effectively tackled in the Drosophila model, by a combination of genetic manipulations, biochemical analyses, and a variety of imaging techniques. This review will present some of the recent advances that were accomplished by utilizing the versatility of the Drosophila system.
机译:少数保守的信号通路决定了多细胞生物的胚胎和胚胎后发育的大多数方面的发现,产生了动物发展的普遍观点(Perrimon,N.,Pitsouli,C.和Shilo,BZ(2012)Cold Spring Harb.Perspect.Biol.4,a005975)。尽管我们掌握了大多数介导决定细胞命运选择的细胞通讯事件的“硬件”元素,但对于这些过程,我们仍然缺乏全面的机械理解。下一个挑战之一是从细胞生物学的角度分析发育信号通路。信号在细胞中的何处发生,一般的细胞机制和结构如何促进发育信号的调节?另一个挑战是从定量的角度检查这些信号通路,而不是将其作为粗略的开关。这需要更精确的测量,并结合时间元素以生成动态序列,而不是冻结过程的快照。定量前景还提出了精度问题,以及未知的机制可以缓冲胚胎之间信号传导的变异性,从而产生可靠且可重复的输出。尽管这些问题对于所有多细胞生物都是普遍存在的,但可以通过结合遗传操作,生化分析和各种成像技术,在果蝇模型中有效解决。这篇综述将介绍通过利用果蝇系统的多功能性实现的一些最新进展。

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