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果蝇胚胎发育早期Odd-skipped功能的动态变化。

Dynamic changes in the functions of Odd-skipped during early Drosophila embryogenesis.

作者信息

Saulier-Le Dréan B, Nasiadka A, Dong J, Krause H M

机构信息

Banting and Best Department of Medical Research, Charles H. Best Institute, University of Toronto, Toronto, Ontario, Canada, M5G 1L6.

出版信息

Development. 1998 Dec;125(23):4851-61. doi: 10.1242/dev.125.23.4851.

DOI:10.1242/dev.125.23.4851
PMID:9806933
Abstract

Although many of the genes that pattern the segmented body plan of the Drosophila embryo are known, there remains much to learn in terms of how these genes and their products interact with one another. Like many of these gene products, the protein encoded by the pair-rule gene odd-skipped (Odd) is a DNA-binding transcription factor. Genetic experiments have suggested several candidate target genes for Odd, all of which appear to be negatively regulated. Here we use pulses of ectopic Odd expression to test the response of these and other segmentation genes. The results are complex, indicating that Odd is capable of repressing some genes wherever and whenever Odd is expressed, while the ability to repress others is temporally or spatially restricted. Moreover, one target gene, fushi tarazu, is both repressed and activated by Odd, the outcome depending upon the stage of development. These results indicate that the activity of Odd is highly dependent upon the presence of cofactors and/or overriding inhibitors. Based on these results, and the segmental phenotypes generated by ectopic Odd, we suggest a number of new roles for Odd in the patterning of embryonic segments. These include gap-, pair-rule- and segment polarity-type functions.

摘要

尽管许多决定果蝇胚胎分节身体模式的基因已为人所知,但在这些基因及其产物如何相互作用方面仍有许多有待了解之处。与许多这类基因产物一样,成对规则基因“奇跳”(Odd)编码的蛋白质是一种DNA结合转录因子。遗传学实验已提出了几个Odd的候选靶基因,所有这些基因似乎都受到负调控。在此,我们利用异位表达Odd的脉冲来测试这些基因以及其他分节基因的反应。结果很复杂,表明Odd能够在其表达的任何时间和地点抑制一些基因,而抑制其他基因的能力则受到时间或空间的限制。此外,一个靶基因“分节基因”,既受到Odd的抑制,也受到其激活,结果取决于发育阶段。这些结果表明,Odd的活性高度依赖于辅因子和/或主导抑制剂的存在。基于这些结果以及异位表达Odd所产生的分节表型,我们提出了Odd在胚胎分节模式形成中的一些新作用。这些作用包括间隙基因、成对规则基因和分节极性类型的功能。

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