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果蝇GATA转录因子在发育胚胎的多个组织中的表达。鉴定启动子区域有P元素插入的纯合致死突变体。

Expression of a Drosophila GATA transcription factor in multiple tissues in the developing embryos. Identification of homozygous lethal mutants with P-element insertion at the promoter region.

作者信息

Lin W H, Huang L H, Yeh J Y, Hoheisel J, Lehrach H, Sun Y H, Tsai S F

机构信息

Institute of Genetics, National Yang-Ming University, Taipei, Taiwan, Republic of China.

出版信息

J Biol Chem. 1995 Oct 20;270(42):25150-8. doi: 10.1074/jbc.270.42.25150.

Abstract

GATA transcription factors are DNA-binding proteins that recognize the core consensus sequence, WGATAR. Previous studies indicated that GATA factors play ann important role in the development of tissue-specific functions in vertebrates. Here we report the identification of a new Drosophila melanogaster GATA factor, dGATAc, which displays a distinct expression pattern in embryos. The local concentration of dGATAc transcripts varies at different stages, being most prominent in the procephalic region at stages 6-10 and in the posterior spiracles, the gut, and the central nervous system at stages 11-13. On the basis of its predicted sequence, DNA-binding assays were performed to confirm that the dGATAc gene encodes a zinc finger protein that can bind the GATA consensus motif with predicted specificity. Two independent mutants carrying a P-element insertion at the dGATAc gene promoter region were identified that are homozygous lethal at the embryonic stage. Using a genetic scheme, it was demonstrated that the lack of dGATAc function can block normal embryonic development. Our results suggest that the dGATAc protein is a tissue-specific transcription factor that is vital to the development of multiple organ systems in D. melanogaster.

摘要

GATA转录因子是一类能识别核心共有序列WGATAR的DNA结合蛋白。先前的研究表明,GATA因子在脊椎动物组织特异性功能的发育中发挥着重要作用。在此,我们报告了一种新的果蝇GATA因子dGATAc的鉴定,它在胚胎中呈现出独特的表达模式。dGATAc转录本的局部浓度在不同阶段有所变化,在6-10期的前脑区域以及11-13期的后气门、肠道和中枢神经系统中最为显著。基于其预测序列,进行了DNA结合试验,以确认dGATAc基因编码一种能以预测的特异性结合GATA共有基序的锌指蛋白。鉴定出两个在dGATAc基因启动子区域携带P元件插入的独立突变体,它们在胚胎期是纯合致死的。通过遗传方案证明,dGATAc功能的缺失会阻碍正常的胚胎发育。我们的结果表明,dGATAc蛋白是一种组织特异性转录因子,对黑腹果蝇多个器官系统的发育至关重要。

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