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果蝇神经前体细胞中螺旋-环-螺旋基因asense的调控与功能

The regulation and function of the helix-loop-helix gene, asense, in Drosophila neural precursors.

作者信息

Jarman A P, Brand M, Jan L Y, Jan Y N

机构信息

Howard Hughes Medical Institute, University of California, San Francisco, CA 94143-0724, USA.

出版信息

Development. 1993 Sep;119(1):19-29. doi: 10.1242/dev.119.Supplement.19.

Abstract

asense is a member of the achaete-scute complex (AS-C) of helix-loop-helix genes involved in Drosophila neurogenesis. Unlike the other AS-C members, which are expressed in subsets of the ectodermal areas (proneural clusters) that give rise to neural precursors, asense is one of a number of genes that are specifically expressed in the neural precursors themselves (neural precursor genes). We have identified a mutant asense phenotype that may reflect this later expression pattern. As a step in understanding the determination of neural precursors from the proneural clusters, we have investigated the potential role of the AS-C products as direct transcriptional activators of neural precursor genes by analysing the regulation of asense. Using genomic rescues and asense-lacZ fusion genes, the neural precursor regulatory element has been identified. We show that this element contains binding sites for AS-C/daughterless heterodimers. Delection of these sites reduces the expression from the fusion gene, but significant expression is still achieved, pointing to the existence of other regulators of asense in addition to the AS-C. asense differs from the other AS-C members in its expression pattern, regulation, mutant phenotype and some DNA-binding properities.

摘要

无翅是果蝇神经发生过程中涉及的螺旋-环-螺旋基因achaete-scute复合体(AS-C)的成员之一。与其他AS-C成员不同,其他成员在外胚层区域的亚群(原神经簇)中表达,这些区域产生神经前体,而无翅是在神经前体自身中特异性表达的众多基因之一(神经前体基因)。我们已经鉴定出一种无翅突变体表型,它可能反映了这种较晚的表达模式。作为理解从原神经簇中确定神经前体的一个步骤,我们通过分析无翅的调控,研究了AS-C产物作为神经前体基因直接转录激活因子的潜在作用。利用基因组拯救和无翅-lacZ融合基因,已经鉴定出神经前体调控元件。我们表明,该元件含有AS-C/无女儿异二聚体的结合位点。这些位点的缺失会降低融合基因的表达,但仍能实现显著表达,这表明除了AS-C之外,还存在其他无翅调节因子。无翅在其表达模式、调控、突变体表型和一些DNA结合特性方面与其他AS-C成员不同。

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