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空气门基因,一种含有同源异型框的裂隙基因,参与果蝇头部发育。

Empty spiracles, a gap gene containing a homeobox involved in Drosophila head development.

作者信息

Walldorf U, Gehring W J

机构信息

Department of Cell Biology, University of Basel, Switzerland.

出版信息

EMBO J. 1992 Jun;11(6):2247-59. doi: 10.1002/j.1460-2075.1992.tb05284.x.

Abstract

The empty spiracles (ems) gene of Drosophila melanogaster is necessary for proper head formation and the development of the posterior spiracles. We have isolated a homeobox-containing gene, W13, by cross-homology using the Drosophila muscle segment homeobox gene (msh) as a probe. The W13 gene maps at 88A, where the ems locus has been previously localized genetically. The sequence alterations found in the W13 coding region from two mutant ems alleles show that W13 is the ems gene. A 2.4 kb RNA corresponding to the ems transcript is expressed from cellular blastoderm throughout all embryonic and larval stages. In situ hybridization to whole mount embryos reveals two domains of expression. During the cellular blastoderm stage ems is expressed in the developing head in a single anterior band. This is correlated with its possible function as an anterior gap gene that is expressed in the preantennal, antennal and intercalary segments and is required for the development of the antennal sense organ, the optic lobe and parts of the head skeleton. The early expression of the ems gene is controlled by the anterior morphogen bicoid (bcd). Using a gene fusion we identified a cis-acting element which is a target for the bcd gene product. Later during embryogenesis ems is expressed in lateral regions of each segment, where the tracheal pits form and lateral neuroblasts originate, as well as in the posterior spiracles. This late expression partially correlates with defects seen in the tracheal tree of ems embryos. In addition to a homeodomain, the N-terminal portion of the predicted protein sequence is very proline-rich, whereas the C-terminus has an acidic profile consistent with the role of the ems gene product as a transcription factor.

摘要

黑腹果蝇的空气门(ems)基因对于正常的头部形成和后气门的发育是必需的。我们以果蝇肌肉节段同源异型框基因(msh)为探针,通过交叉同源性分离出了一个含同源异型框的基因W13。W13基因定位于88A,而ems基因座先前已在此处通过遗传学方法定位。从两个突变的ems等位基因的W13编码区发现的序列改变表明W13就是ems基因。一个与ems转录本相对应的2.4 kb RNA在细胞胚盘期至所有胚胎和幼虫阶段均有表达。对整个胚胎进行原位杂交显示有两个表达结构域。在细胞胚盘期,ems在发育中的头部的一条单一前带中表达。这与其作为一个前间隙基因的可能功能相关,该基因在前触角节、触角节和间插节中表达,是触角感觉器官、视叶和部分头部骨骼发育所必需的。ems基因的早期表达受前部形态发生素双胸(bcd)的控制。通过基因融合,我们鉴定出了一个顺式作用元件,它是bcd基因产物的作用靶点。在胚胎发育后期,ems在每个节段的侧面区域表达,气管凹在此处形成,侧面神经母细胞也在此处起源,同时ems也在后气门中表达。这种后期表达与ems胚胎气管树中所见的缺陷部分相关。除了一个同源异型结构域外,预测的蛋白质序列的N端部分富含脯氨酸,而C端具有酸性特征,这与ems基因产物作为转录因子的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c7d/556692/b96c349a4406/emboj00091-0246-a.jpg

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