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Identification of transcriptional targets of the dual-function transcription factor/phosphatase eyes absent

机译:鉴定双功能转录因子/磷酸酶眼的转录靶标

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摘要

Drosophila eye specification and development relies on a collection of transcription factors termed the retinal determination gene network (RDGN). Two members of this network, Eyes absent (EYA) and Sine oculis (SO), form a transcriptional complex in which EYA provides the transactivation function while SO provides the DNA binding activity. EYA also functions as a protein tyrosine phosphatase, raising the question of whether transcriptional output is dependent or independent of phosphatase activity. To explore this, we used microarrays together with binding site analysis, quantitative real-time PCR, chromatin immunoprecipitation, genetics and in vivo expression analysis to identify new EYA-SO targets. In parallel, we examined the expression profiles of tissue expressing phosphatase mutant eya and found that reducing phosphatase activity did not globally impair transcriptional output. Among the targets identified by our analysis was the cell cycle regulatory gene, string (stg), suggesting that EYA and SO may influence cell proliferation through transcriptional regulation of stg. Future investigation into the regulation of stg and other EYA-SO targets identified in this study will help elucidate the transcriptional circuitries whereby output from the RDGN integrates with other signaling inputs to coordinate retinal development. (C) 2007 Elsevier Inc. All rights reserved.
机译:果蝇眼的规格和发育依赖于称为视网膜测定基因网络(RDGN)的转录因子的集合。该网络的两个成员,无眼(EYA)和正弦(SO),形成转录复合体,其中EYA提供反式激活功能,而SO提供DNA结合活性。 EYA还起蛋白质酪氨酸磷酸酶的作用,引起了转录输出是依赖还是不依赖磷酸酶活性的问题。为了探索这一点,我们将微阵列与结合位点分析,定量实时PCR,染色质免疫沉淀,遗传学和体内表达分析一起使用,以鉴定新的EYA-SO靶标。同时,我们检查了表达磷酸酶突变体eya的组织的表达谱,发现降低的磷酸酶活性不会整体上损害转录输出。通过我们的分析确定的靶标之一是细胞周期调控基因string(stg),这表明EYA和SO可能通过stg的转录调控影响细胞增殖。未来对stg和本研究中确定的其他EYA-SO靶标调控的研究将有助于阐明转录途径,从而RDGN的输出与其他信号输入整合以协调视网膜发育。 (C)2007 Elsevier Inc.保留所有权利。

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