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首页> 外文期刊>Developmental biology >Regulation of Drosophila friend of GATA gene, u-shaped, during hematopoiesis: A direct role for Serpent and Lozenge
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Regulation of Drosophila friend of GATA gene, u-shaped, during hematopoiesis: A direct role for Serpent and Lozenge

机译:造血过程中对U型GATA基因果蝇朋友的调节:蛇和锭剂的直接作用

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摘要

Friend of GATA proteins interact with GATA factors to regulate development in a variety of tissues. We analyzed cis- and trans-regulation of the Drosophila gene, it-shaped, to better understand the transcriptional control of this important gene family during hematopoiesis. Using overlapping genomic fragments driving tissue-specific reporter-gene (lacZ) expression, we identified two minimal hematopoietic enhancers within the 7.4 kb region upstream of the transcription start site. One enhancer was active in all classes of hemocytes, whereas the other was active in hemocyte precursors and plasmatocytes only. The GATA factor, Serpent, directly regulated the activity of both enhancers. However, activity in the crystal cell lineage not only required Serpent but also the RUNX homologue, Lozenge. This is the first demonstration of GATA and RUNX direct regulation of Friend of GATA gene expression and provides additional evidence for the combinatorial control of crystal cell lineage commitment by Serpent, Lozenge, and U-shaped. In addition, we analyzed cis-regulation of ush expression in the lymph gland and identified similarities and differences between regulatory strategies used during embryonic and lymph gland hematopoiesis. The results of these studies provide information to analyze further the regulation of this conserved gene family and its role during hematopoietic lineage commitment. (c) 2006 Elsevier Inc. All rights reserved.
机译:GATA蛋白的朋友与GATA因子相互作用,以调节多种组织的发育。我们分析了果蝇基因的顺式和反式调节,以更好地了解造血过程中该重要基因家族的转录调控。使用重叠的基因组片段驱动组织特异性报告基因(lacZ)表达,我们在转录起始位点上游7.4 kb区域内鉴定了两个最小的造血增强子。一种增强剂在所有类型的血细胞中均具有活性,而另一种仅在血细胞前体和浆细胞中具有活性。 GATA因子Serpent直接调节两种增强子的活性。但是,晶体细胞谱系中的活性不仅需要毒蛇,还需要RUNX同源物Lozenge。这是GATA和RUNX直接调节Friend的GATA基因表达的首次演示,并为蛇,菱形和U形对晶体细胞谱系定型的组合控制提供了其他证据。此外,我们分析了在淋巴腺中ush表达的顺式调节,并确定了在胚胎和淋巴造血过程中使用的调节策略之间的异同。这些研究的结果为进一步分析这个保守基因家族的调控及其在造血谱系承诺中的作用提供了信息。 (c)2006 Elsevier Inc.保留所有权利。

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