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将位置信息传递给Hox基因:cdx基因产物与位置敏感调控元件的关键相互作用。

Transducing positional information to the Hox genes: critical interaction of cdx gene products with position-sensitive regulatory elements.

作者信息

Charité J, de Graaff W, Consten D, Reijnen M J, Korving J, Deschamps J

机构信息

Hubrecht Laboratory, The Netherlands Institute for Developmental Biology, Uppsalalaan 8, The Netherlands.

出版信息

Development. 1998 Nov;125(22):4349-58. doi: 10.1242/dev.125.22.4349.

Abstract

Studies of pattern formation in the vertebrate central nervous system indicate that anteroposterior positional information is generated in the embryo by signalling gradients of an as yet unknown nature. We searched for transcription factors that transduce this information to the Hox genes. Based on the assumption that the activity levels of such factors might vary with position along the anteroposterior axis, we devised an in vivo assay to detect responsiveness of cis-acting sequences to such differentially active factors. We used this assay to analyze a Hoxb8 regulatory element, and detected the most pronounced response in a short stretch of DNA containing a cluster of potential CDX binding sites. We show that differentially expressed DNA binding proteins are present in gastrulating embryos that bind to these sites in vitro, that cdx gene products are among these, and that binding site mutations that abolish binding of these proteins completely destroy the ability of the regulatory element to drive regionally restricted expression in the embryo. Finally, we show that ectopic expression of cdx gene products anteriorizes expression of reporter transgenes driven by this regulatory element, as well as that of the endogenous Hoxb8 gene, in a manner that is consistent with them being essential transducers of positional information. These data suggest that, in contrast to Drosophila Caudal, vertebrate cdx gene products transduce positional information directly to the Hox genes, acting through CDX binding sites in their enhancers. This may represent the ancestral mode of action of caudal homologues, which are involved in anteroposterior patterning in organisms with widely divergent body plans and modes of development.

摘要

对脊椎动物中枢神经系统模式形成的研究表明,胚胎中前后位置信息是由一种性质尚不清楚的信号梯度产生的。我们寻找将这种信息传递给Hox基因的转录因子。基于这样的假设,即这些因子的活性水平可能沿前后轴随位置而变化,我们设计了一种体内测定法来检测顺式作用序列对这种差异活性因子的反应性。我们用这种测定法分析了一个Hoxb8调控元件,并在一段含有一组潜在CDX结合位点的短DNA片段中检测到了最明显的反应。我们表明,在原肠胚形成期的胚胎中存在差异表达的DNA结合蛋白,它们在体外与这些位点结合,cdx基因产物就在其中,并且消除这些蛋白结合的结合位点突变完全破坏了调控元件在胚胎中驱动区域特异性表达的能力。最后,我们表明,cdx基因产物的异位表达使由该调控元件驱动的报告转基因以及内源性Hoxb8基因的表达向前移位,其方式与它们作为位置信息的重要转导者相一致。这些数据表明,与果蝇的Caudal不同,脊椎动物的cdx基因产物通过其增强子中的CDX结合位点直接将位置信息传递给Hox基因。这可能代表了尾同源物的祖先作用模式,它们参与了身体结构和发育模式差异很大的生物体的前后模式形成。

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