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盘基网柄菌早期与晚期发育之间发育转换的关键组成部分——G盒结合因子的克隆与特性分析

Cloning and characterization of the G-box binding factor, an essential component of the developmental switch between early and late development in Dictyostelium.

作者信息

Schnitzler G R, Fischer W H, Firtel R A

机构信息

Department of Biology, University of California, San Diego, La Jolla 92093-0634.

出版信息

Genes Dev. 1994 Feb 15;8(4):502-14. doi: 10.1101/gad.8.4.502.

Abstract

During Dictyostelium development, the cAMP-regulated induction of cell-type-specific late genes marks a developmental switch from the initial formation of the multicellular organism to the differentiation of the various cell types that mediate morphogenesis and eventually give rise to the mature fruting body. The G-box binding factor (GBF) is a developmentally regulated Dictyostelium transcription factor whose affinity for a DNA sequence correlates with the ability of that sequence to confer inducibility to late gene promoters in response to high, continuous levels of extracellular cAMP. We report the purification of GBF and cloning of the gene that encodes it, as confirmed by in vitro production of GBF activity. The predicted protein is highly basic and contains two putative zinc fingers. Disruption of the GBF gene by homologous recombination results in the loss of all GBF DNA-binding activity, developmental arrest at the loose aggregate stage, and the loss of late gene induction during development or in response to extracellular cAMP. Constitutive expression of GBF complements the null phenotype and allows for the rapid activation of a class of late genes in response to cAMP. Our results indicate that GBF acts as an extracellular cAMP-responsive transcriptional activator regulating late gene expression and is an essential component of a developmental switch between aggregation and cellular morphogenesis.

摘要

在盘基网柄菌发育过程中,细胞类型特异性晚期基因的cAMP调节诱导标志着从多细胞生物体的初始形成到介导形态发生并最终产生成熟子实体的各种细胞类型分化的发育转变。G盒结合因子(GBF)是一种受发育调节的盘基网柄菌转录因子,其对DNA序列的亲和力与该序列响应高水平、持续的细胞外cAMP赋予晚期基因启动子诱导性的能力相关。我们报告了GBF的纯化及其编码基因的克隆,体外产生GBF活性证实了这一点。预测的蛋白质具有高度碱性,包含两个假定的锌指。通过同源重组破坏GBF基因会导致所有GBF DNA结合活性丧失、在松散聚集阶段发育停滞以及在发育过程中或响应细胞外cAMP时晚期基因诱导丧失。GBF的组成型表达补充了无效表型,并允许一类晚期基因响应cAMP快速激活。我们的结果表明,GBF作为细胞外cAMP响应转录激活因子调节晚期基因表达,是聚集和细胞形态发生之间发育转变的重要组成部分。

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