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果蝇Notch受体活性在成虫外部感觉器官发育过程中抑制无翅功能。

Drosophila Notch receptor activity suppresses Hairless function during adult external sensory organ development.

作者信息

Lyman D F, Yedvobnick B

机构信息

Department of Biology, Emory University, Atlanta, Georgia 30322, USA. dlyman/biology.emory.edu

出版信息

Genetics. 1995 Dec;141(4):1491-505. doi: 10.1093/genetics/141.4.1491.

Abstract

The neurogenic Notch locus of Drosophila encodes a receptor necessary for cell fate decisions within equivalence groups, such as proneural clusters. Specification of alternate fates within clusters results from inhibitory communication among cells having comparable neural fate potential. Genetically, Hairless (H) acts as an antagonist of most neurogenic genes and may insulate neural precursor cells from inhibition. H function is required for commitment to the bristle sensory organ precursor (SOP) cell fate and for daughter cell fates. Using Notch gain-of-function alleles and conditional expression of an activated Notch transgene, we show that enhanced signaling produces H-like loss-of-function phenotypes by suppressing bristle SOP cell specification or by causing an H-like transformation of sensillum daughter cell fates. Furthermore, adults carrying Notch gain of function and H alleles exhibit synergistic enhancement of mutant phenotypes. Over-expression of an H+ transgene product suppressed virtually all phenotypes generated by Notch gain-of-function genotypes. Phenotypes resulting from over-expression of the H+ transgene were blocked by the Notch gain-of-function products, indicating a balance between Notch and H activity. The results suggest that H insulates SOP cells from inhibition and indicate that H activity is suppressed by Notch signaling.

摘要

果蝇的神经源性Notch基因座编码一种受体,该受体对于等效组内的细胞命运决定是必需的,比如原神经细胞簇。簇内不同命运的特化源于具有相似神经命运潜能的细胞之间的抑制性通讯。在遗传学上,无毛(H)蛋白作为大多数神经源性基因的拮抗剂,可能使神经前体细胞免受抑制。H蛋白的功能对于确定刚毛感觉器官前体(SOP)细胞命运以及子细胞命运是必需的。利用Notch功能获得性等位基因和激活的Notch转基因的条件性表达,我们发现增强的信号传导通过抑制刚毛SOP细胞特化或导致感觉器子细胞命运发生类似H蛋白缺失的转变,从而产生类似H蛋白缺失的功能表型。此外,携带Notch功能获得性和H等位基因的成虫表现出突变表型的协同增强。H +转基因产物的过表达几乎抑制了由Notch功能获得性基因型产生的所有表型。Notch功能获得性产物阻断了H +转基因过表达所产生的表型,这表明Notch和H蛋白活性之间存在平衡。结果表明,H蛋白使SOP细胞免受抑制,并表明H蛋白的活性受到Notch信号传导的抑制。

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