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果蝇中线胶质基因保守增强子的共同基序。

Common motifs shared by conserved enhancers of Drosophila midline glial genes.

机构信息

Department of Genetics, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

J Exp Zool B Mol Dev Evol. 2011 Jan 15;316(1):61-75. doi: 10.1002/jez.b.21382. Epub 2010 Nov 2.

Abstract

Coding sequences are usually the most highly conserved sectors of DNA, but genomic regions controlling the expression pattern of certain genes can also be conserved across diverse species. In this study, we identify five enhancers capable of activating transcription in the midline glia of Drosophila melanogaster and each contains sequences conserved across at least 11 Drosophila species. In addition, the conserved sequences contain reiterated motifs for binding sites of the known midline transcriptional activators, Single-minded, Tango, Dichaete, and Pointed. To understand the molecular basis for the highly conserved genomic subregions within enhancers of the midline genes, we tested the ability of various motifs to affect midline expression, both individually and in combination, within synthetic reporter constructs. Multiple copies of the binding site for the midline regulators Single-minded and Tango can drive expression in midline cells; however, small changes to the sequences flanking this transcription factor binding site can inactivate expression in midline cells and activate expression in tracheal cells instead. For the midline genes described in this study, the highly conserved sequences appear to juxtapose positive and negative regulatory factors in a configuration that activates genes specifically in the midline glia, while maintaining them inactive in other tissues, including midline neurons and tracheal cells.

摘要

编码序列通常是 DNA 中高度保守的区域,但控制特定基因表达模式的基因组区域也可以在不同物种中保守。在这项研究中,我们鉴定了五个能够在果蝇中线胶质细胞中激活转录的增强子,每个增强子都包含至少 11 种果蝇物种保守的序列。此外,保守序列包含已知中线转录激活因子 Single-minded、Tango、Dichaete 和 Pointed 的结合位点的重复基序。为了了解中线基因增强子中高度保守基因组亚区域的分子基础,我们测试了各种基序在合成报告基因构建体中单独和组合使用时影响中线表达的能力。中线调节因子 Single-minded 和 Tango 的结合位点的多个拷贝可以驱动中线细胞中的表达;然而,围绕这个转录因子结合位点的序列的微小变化可以使中线细胞中的表达失活,并使气管细胞中的表达激活。对于本研究中描述的中线基因,高度保守的序列似乎将正调控因子和负调控因子并置在一个特定激活中线胶质细胞中基因的构象中,同时使它们在其他组织(包括中线神经元和气管细胞)中保持失活。

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