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与含BTB的lola神经发生因子具有同源性的copia逆转座子转录因子的分子克隆与特性分析

Molecular cloning and characterization of a transcription factor for the copia retrotransposon with homology to the BTB-containing lola neurogenic factor.

作者信息

Cavarec L, Jensen S, Casella J F, Cristescu S A, Heidmann T

机构信息

Unité de Physicochimie et Pharmacologie des Macromolécules Biologiques, CNRS URA147, Institut Gustave Roussy, Villejuif, France.

出版信息

Mol Cell Biol. 1997 Jan;17(1):482-94. doi: 10.1128/MCB.17.1.482.

Abstract

By transfection experiments, we previously identified a 72-bp enhancer sequence within the Drosophila copia retrotransposon which is involved in the control of the transcription level of this mobile element in cells in culture. Gel shift assays with nuclear extracts from Drosophila hydei-derived DH-33 cells further demonstrated specific interactions of at least two nuclear factors with this enhancer sequence. Using this sequence as a probe for the screening of an expression cDNA library that we constructed from DH-33 cells RNA, we have isolated a cDNA clone encoding a 110-kDa protein with features common to those of known transcription factors; these include a two-zinc-finger motif at the C terminus, three glutamine-rich domains in the presumptive activation domain of the protein, and an N-terminal domain which shares homology with the Bric-à-brac, Tramtrack, and Broad-Complex BTB boxes. The precise DNA recognition sequence for this transcription factor has been determined by both gel shift assays and footprinting experiments with a recombinant protein made in bacteria. The functionality of the cloned element was demonstrated upon transcriptional activation of copia reporter genes, as well as of a minimal promoter coupled with the identified target DNA sequence, in cotransfection assays in cells in culture with an expression vector for the cloned factor. Southern blot and nucleotide sequence analyses revealed a related gene in Drosophila melanogaster (the lola gene) previously identified by a genetic approach as involved in axon growth and guidance. Transfection assays in cells in culture with lola gene expression vectors and in situ hybridization experiments with lola gene mutants finally provided evidence that the copia retrotransposon is regulated by this neurogenic gene in D.melanogaster, with a repressor effect in the central nervous systems of the embryos.

摘要

通过转染实验,我们之前在果蝇copia逆转录转座子中鉴定出一段72个碱基对的增强子序列,该序列参与调控这种移动元件在培养细胞中的转录水平。用源自海德氏果蝇的DH - 33细胞的核提取物进行凝胶迁移实验,进一步证明了至少两种核因子与该增强子序列存在特异性相互作用。利用该序列作为探针筛选我们从DH - 33细胞RNA构建的表达cDNA文库,我们分离出一个编码110 kDa蛋白质的cDNA克隆,该蛋白质具有已知转录因子的共同特征;这些特征包括C末端的双锌指基序、蛋白质假定激活域中的三个富含谷氨酰胺的结构域,以及与Bric-à-brac、Tramtrack和Broad-Complex BTB框具有同源性的N末端结构域。通过凝胶迁移实验和用细菌中制备的重组蛋白进行足迹实验,已确定了该转录因子精确的DNA识别序列。在培养细胞的共转染实验中,用克隆因子的表达载体对copia报告基因以及与已鉴定的靶DNA序列偶联的最小启动子进行转录激活,证明了克隆元件的功能。Southern印迹和核苷酸序列分析揭示了黑腹果蝇中一个相关基因(lola基因),该基因先前通过遗传方法被鉴定为参与轴突生长和导向。用lola基因表达载体在培养细胞中进行转染实验以及用lola基因突变体进行原位杂交实验,最终提供了证据表明copia逆转录转座子受黑腹果蝇中这个神经发生基因的调控,在胚胎的中枢神经系统中具有抑制作用。

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