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一种原神经基因achaete在果蝇幼虫神经系统发育中的表达及作用

The expression and role of a proneural gene, achaete, in the development of the larval nervous system of Drosophila.

作者信息

Ruiz-Gómez M, Ghysen A

机构信息

Laboratoire de Neurobiologie, Université Libre de Bruxelles, Rhode St Genèse, Belgium.

出版信息

EMBO J. 1993 Mar;12(3):1121-30. doi: 10.1002/j.1460-2075.1993.tb05753.x.

Abstract

The proneural genes of Drosophila are required for the segregation of neural precursors from the ectoderm. One of the proneural genes, achaete (ac), is responsible for the formation of a subset of larval and adult sense organs. We have examined the pattern of expression of ac and its regulation during embryogenesis. ac is expressed at particular locations of the ectoderm according to a highly dynamic and complex pattern. At each location the expression of ac occurs in two stages. First, ac is expressed in a cluster of cells ('competent' stage). This pattern of expression depends on an array of cis-regulatory sites which promote the expression of ac in clusters of cells at particular locations. Second, one cell of each cluster accumulates ac transcripts at a high level ('determined' stage) and becomes the neural progenitor cell. The restriction of the determined stage to one cell of the cluster requires the gene Notch. The transactivation of ac by sc (scute) or by other genes of the achaete-scute complex (AS-C) plays no role in defining the initial pattern of expression of ac, but might play a role in the shift from the competent to the determined level. We propose that the requirements of particular sense organs for different AS-C genes reflect the organization of this gene complex, rather than functional differences between the genes.

摘要

果蝇的原神经基因对于从外胚层分离神经前体是必需的。原神经基因之一achaete(ac)负责幼虫和成虫感觉器官的一个子集的形成。我们已经研究了ac在胚胎发育过程中的表达模式及其调控。ac根据高度动态和复杂的模式在外胚层的特定位置表达。在每个位置,ac的表达发生在两个阶段。首先,ac在一群细胞中表达(“感受态”阶段)。这种表达模式取决于一系列顺式调控位点,这些位点促进ac在特定位置的细胞簇中表达。其次,每个细胞簇中的一个细胞高水平积累ac转录本(“决定态”阶段)并成为神经祖细胞。将决定态阶段限制在细胞簇中的一个细胞需要Notch基因。sc(scute)或achaete-scute复合体(AS-C)的其他基因对ac的反式激活在定义ac的初始表达模式中不起作用,但可能在从感受态向决定态水平的转变中起作用。我们提出,特定感觉器官对不同AS-C基因的需求反映了该基因复合体的组织方式,而不是基因之间的功能差异。

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