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反馈调节是果蝇翅脉形态发生所需的Delta-Notch信号传导的核心。

Feedback regulation is central to Delta-Notch signalling required for Drosophila wing vein morphogenesis.

作者信息

Huppert S S, Jacobsen T L, Muskavitch M A

机构信息

Program in Genetics, Cell and Developmental Biology, Department of Biology, Indiana University, Bloomington 47405, USA.

出版信息

Development. 1997 Sep;124(17):3283-91. doi: 10.1242/dev.124.17.3283.

Abstract

Delta and Notch are required for partitioning of vein and intervein cell fates within the provein during Drosophila metamorphosis. We find that partitioning of these fates is dependent on Delta-mediated signalling from 22 to 30 hours after puparium formation at 25 degrees C. Within the provein, Delta is expressed more highly in central provein cells (presumptive vein cells) and Notch is expressed more highly in lateral provein cells (presumptive intervein cells). Accumulation of Notch in presumptive intervein cells is dependent on Delta signalling activity in presumptive vein cells and constitutive Notch receptor activity represses Delta accumulation in presumptive vein cells. When Delta protein expression is elevated ectopically in presumptive intervein cells, complementary Delta and Notch expression patterns in provein cells are reversed, and vein loss occurs because central provein cells are unable to stably adopt the vein cell fate. Our findings imply that Delta-Notch signalling exerts feedback regulation on Delta and Notch expression during metamorphic wing vein development, and that the resultant asymmetries in Delta and Notch expression underlie the proper specification of vein and intervein cell fates within the provein.

摘要

在果蝇变态发育过程中,Delta和Notch对于在原翅脉内区分翅脉和翅脉间细胞命运是必需的。我们发现,在25摄氏度下,这些命运的区分依赖于蛹形成后22至30小时Delta介导的信号传导。在原翅脉内,Delta在中央原翅脉细胞(假定的翅脉细胞)中表达更高,而Notch在外侧原翅脉细胞(假定的翅脉间细胞)中表达更高。假定的翅脉间细胞中Notch的积累依赖于假定的翅脉细胞中的Delta信号活性,组成型Notch受体活性抑制假定的翅脉细胞中Delta的积累。当Delta蛋白在假定的翅脉间细胞中异位表达升高时,原翅脉细胞中互补的Delta和Notch表达模式会颠倒,并且会出现翅脉缺失,因为中央原翅脉细胞无法稳定地采用翅脉细胞命运。我们的研究结果表明,Delta-Notch信号在变态翅脉发育过程中对Delta和Notch表达发挥反馈调节作用,并且Delta和Notch表达中产生的不对称性是原翅脉内翅脉和翅脉间细胞命运正确特化的基础。

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