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由deltaD和deltaC对体节时钟进行启动、起始和同步。

Priming, initiation and synchronization of the segmentation clock by deltaD and deltaC.

作者信息

Mara Andrew, Schroeder Joshua, Chalouni Cécile, Holley Scott A

机构信息

Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, CT 06520, USA.

出版信息

Nat Cell Biol. 2007 May;9(5):523-30. doi: 10.1038/ncb1578. Epub 2007 Apr 8.

Abstract

Zebrafish somitogenesis is governed by a segmentation clock that generates oscillations in expression of several Notch pathway genes, including her1, her7 and deltaC. Using a combination of pharmacological inhibition and Mendelian genetics, we show that DeltaD and DeltaC, two Notch ligands, represent functionally distinct signals within the segmentation clock. Using high-resolution fluorescent in situ hybridization, the oscillations were divided into phases based on eight distinct subcellular patterns of mRNA localization for 140,000 cells. her1, her7 and deltaC expression was examined in wild-type, deltaD(-/-) and deltaC(-/-) embryos. We identified areas within the tailbud where the clock is set up in the progenitor cells (priming), where the clock starts running (initiation), and where the clocks of neighbouring cells are entrained (synchronization). We find that the clocks of motile cells are primed by deltaD in a progenitor zone in the posterior tailbud and that deltaD is required for cells to initiate oscillations on exiting this zone. Oscillations of adjacent cells are synchronized and amplified by deltaC in the posterior presomitic mesoderm as cell movement subsides and cells maintain stable neighbour relationships.

摘要

斑马鱼的体节发生受一个节段时钟调控,该时钟在包括her1、her7和deltaC在内的几个Notch信号通路基因的表达中产生振荡。通过药理学抑制和孟德尔遗传学相结合的方法,我们发现DeltaD和DeltaC这两种Notch配体在节段时钟内代表功能不同的信号。使用高分辨率荧光原位杂交技术,根据140,000个细胞的mRNA定位的八种不同亚细胞模式,将振荡分为不同阶段。在野生型、deltaD(-/-)和deltaC(-/-)胚胎中检测了her1、her7和deltaC的表达。我们确定了尾芽内祖细胞中建立时钟的区域(启动)、时钟开始运行的区域(起始)以及相邻细胞的时钟被同步的区域(同步)。我们发现,运动细胞的时钟在尾芽后部的一个祖细胞区由deltaD启动,并且deltaD是细胞离开该区域时启动振荡所必需的。随着细胞运动减弱且细胞保持稳定的邻域关系,相邻细胞的振荡在后部体节中胚层由deltaC同步和放大。

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