首页> 外文期刊>Genesis: the journal of genetics and development >Notch and suppressor of Hairless regulate levels but not patterns of Delta expression in Drosophila.
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Notch and suppressor of Hairless regulate levels but not patterns of Delta expression in Drosophila.

机译:果蝇的Notch和抑制因子可调节果蝇的水平,但不能调节Delta表达的模式。

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The Notch signal transduction pathway is highly conserved and governs many developmental decisions in metazoans. The ligand Delta, and its receptor Notch, are often expressed in complementary patterns during Drosophila postembryonic development. Notch signaling is thought to play a role in generation of these complementary patterns through feedback mechanisms that regulate Delta and Notch expression. We have examined Delta expression during postembryonic development, following global alteration of Notch-dependent or Su(H)-dependent transcriptional regulation. We find that Notch and Su(H) regulate Delta expression in a manner that varies by context. Surprisingly, we find that wild type Delta expression levels are influenced by Su(H)-dependent mechanisms only in regions of high Delta/low Notch expression. In contrast, Delta expression levels in regions of low Delta/high Notch expression appear to be unaffected by Su(H)-mediated regulation. We conclude that Notch pathway feedback regulation is unlikely to contribute to the generation of complementary patterns in the contexts examined.
机译:Notch信号转导途径是高度保守的,并控制后生动物的许多发育决定。在果蝇胚胎后发育过程中,配体Delta及其受体Notch通常以互补模式表达。人们认为,Notch信号通过调节Delta和Notch表达的反馈机制在这些互补模式的产生中起作用。我们已经检查了Notch依赖或Su(H)依赖的转录调控的全球变化后胚胎发育过程中的Delta表达。我们发现Notch和Su(H)以随环境变化的方式调节Delta表达。令人惊讶地,我们发现野生型Delta表达水平仅在高Delta /低Notch表达的区域受Su(H)依赖性机制影响。相反,低Delta /高Notch表达区域中的Delta表达水平似乎不受Su(H)介导的调节的影响。我们得出结论,在所研究的环境中,Notch通路反馈调节不太可能有助于产生互补模式。

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