首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Notch and delta mRNAs in early-stage and mid-stage drosophila embryos exhibit complementary patterns of protein-producing potentials.
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Notch and delta mRNAs in early-stage and mid-stage drosophila embryos exhibit complementary patterns of protein-producing potentials.

机译:早期和中期果蝇胚胎中的凹口和Delta mrnas表现出蛋白质产生潜力的互补模式。

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摘要

Notch and Delta proteins generate Notch signaling that specifies cell fates during animal development. There is an intriguing phenomenon in Drosophila embryogenesis that has not received much attention and whose significance to embryogenesis is unknown. Notch and Delta mRNAs expressed in early-stage embryos are shorter than their counterparts in mid-stage embryos. We show here that the difference in sizes is due to mRNA 3' processing at alternate polyadenylation sites. While the early-stage Notch mRNA has a lower protein-producing potential than the mid-stage Notch mRNA, the early-stage Delta mRNA has a higher protein-producing potential than the mid-stage Delta mRNA. Our data can explain the complementary patterns of Notch and Delta protein levels in early- and mid-stage embryos. Our data also raise the possibility that the manner and regulation of Notch signaling change in the course of embryogenesis and that this change is effected by 3' UTR and mRNA 3' processing factors.
机译:凹口和Delta蛋白生成陷波信令,用于在动物发育过程中指定细胞命名。 在果蝇胚胎发生中有一种有趣的现象,其尚未得到很多关注,并且对胚胎发生的意义是未知的。 在早期胚胎中表达的凹口和Delta MRNA比中阶胚胎的对应物短。 我们在这里展示尺寸的差异是由于替代聚腺苷酸位点的mRNA 3'处理。 虽然早期缺口mRNA具有比中级Notch mRNA的蛋白质产生潜力,而早期的δmRNA具有比中期δmRNA的蛋白质产生更高的蛋白质潜力。 我们的数据可以解释早期和中期胚胎中凹口和Delta蛋白水平的互补模式。 我们的数据还提出了胚胎发生过程中Notch信号传导变化的方法和调节,并通过3'UTR和mRNA 3'处理因子进行这种变化。

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