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首页> 外文期刊>Development >Sequence-specific protein interaction with a transcriptional enhancer involved in the autoregulated expression of cAMP receptor 1 in Dictyostelium.
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Sequence-specific protein interaction with a transcriptional enhancer involved in the autoregulated expression of cAMP receptor 1 in Dictyostelium.

机译:与转录增强子的序列特异性蛋白相互作用,该转录增强子参与了小球藻中cAMP受体1的自动调节表达。

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摘要

Major stages of Dictyostelium development are regulated by secreted, extracellular cAMP through activation of a serpentine receptor family. During early development, oscillations of extracellular cAMP mobilize cells for aggregation; later, continuous exposure to higher extracellular cAMP concentrations downregulates early gene expression and promotes cytodifferentiation and cell-specific gene expression. The cAMP receptor 1 gene CAR1 has two promoters that are differentially responsive to these extracellular cAMP stimuli. The early CAR1 promoter is induced by nM pulses of cAMP, which in turn are generated by CAR1-dependent activation of adenylyl cyclase (AC). Higher, non-fluctuating concentrations of cAMP will adapt this AC stimulus-response, repress the activated early promoter and induce the dormant late promoter. We now identify a critical element of the pulse-induced CAR1 promoter and a nuclear factor with sequence-specific interaction. Mutation of four nucleotides within the element prevents both in vitro protein binding and in vivo expression of an otherwise fully active early CAR1 promoter and multimerization of the wild-type, but not mutant, sequence will confer cAMP regulation to a quiescent heterologous promoter. These cis and trans elements, thus, constitute a part of the molecular response to the cAMP transmembrane signal cascade that regulates early development of Dictyostelium.
机译:Dictyostelium发育的主要阶段是通过激活蛇形受体家族而由分泌的细胞外cAMP调节的。在早期发育过程中,细胞外cAMP的振荡动员细胞聚集。后来,持续暴露于较高的细胞外cAMP浓度会下调早期基因表达并促进细胞分化和细胞特异性基因表达。 cAMP受体1基因CAR1具有两个启动子,对这些细胞外cAMP刺激有不同的反应。早期CAR1启动子由nM的cAMP脉冲诱导,而后者又由腺苷酸环化酶(AC)的CAR1依赖性激活产生。较高的非波动cAMP浓度将适应这种AC刺激反应,抑制活化的早期启动子并诱导休眠的晚期启动子。现在,我们确定了脉冲诱导的CAR1启动子的关键元素和具有序列特异性相互作用的核因子。元件中四个核苷酸的突变既可以阻止体外蛋白结合,也可以阻止体内具有其他功能的早期CAR1启动子的表达,以及野生型(而非突变)序列的多聚化,从而将cAMP调控赋予静态异源启动子。因此,这些顺式和反式元件构成了对cAMP跨膜信号级联反应的分子反应的一部分,该信号调控了Dictyostelium的早期发育。

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