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An extracellular matrix response element in the promoter of the LpS1 genes of the sea urchin Lytechinus pictus.

机译:海胆Lytechinus pictus LpS1基因启动子中的细胞外基质反应元件。

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摘要

The extracellular matrix (ECM) has been shown to play an important role in development and tissue-specific gene expression, yet the mechanism by which genes receive signals from the ECM is poorly understood. The aboral ectoderm-specific LpS1-alpha and -beta genes of Lytechinus pictus , members of the Spec gene family, provide an excellent model system to study ECM- mediated gene regulation. Disruption of the ECM by preventing collagen deposition using the lathrytic agent beta-aminopropionitrile (BAPN) inhibits LpS1 gene transcription. LpS1 transcription resumes after removal of BAPN and subsequent collagen reformation. Using a chloramphenicol acetyltransferase (CAT) reporter gene assay, we show that a 125 bp region of the LpS1-beta promoter from -108 to +17 contains an ECM response element (ECM RE). Insertion of the 125 bp region into the promoter of the metallothionein gene of L. pictus, a gene unaffected by ECM disruption, caused the fused promoter to become ECM dependent. As with the endogenous LpS1 genes, CAT activity directed by the fused LpS1-beta promoter resumed in embryos recovered from ECM disruption. A mutation in a cis -acting element called the proximal G-string, which lies in the 125 bp region, caused CAT activity levels in ECM-disrupted embryos to equal that of the wild-type LpS1-bet apromoter in ECM-intact embryos. These results suggest that the intact ECM normally transmits signals to inhibit repressor activity at the proximal G-string in aboral ectoderm cells. Consistent with these results were our findings which showed that in addition to expression in the aboral ectoderm, the proximal G-string mutation caused expression of the CAT gene in oral ectoderm cells. These studies suggested that the proximal G-string serves as a binding site for negative regulation of the LpS1 genes in oral ectoderm during development. We also examined trans -acting factors binding the proximal G-string following ECM disruption. Band shift gels revealed a predominant set of slower migrating nuclear proteins from ECM-disrupted embryos which bound the proximal G-string. This work suggested that ECM disruption initiates signaling that induces a repressor to bind the ECM RE and/or modifies ECM RE binding proteins, which in turn represses LpS1 gene activity.
机译:已显示细胞外基质(ECM)在发育和组织特异性基因表达中起着重要作用,但是人们对基因从ECM接收信号的机制了解甚少。 Spec基因家族的成员,Lytechinus pictus的aboral外胚层特异性LpS1-alpha和-beta基因,为研究ECM介导的基因调控提供了一个极好的模型系统。通过防止使用胶原蛋白β-氨基丙腈(BAPN)沉积胶原蛋白而破坏ECM,可以抑制LpS1基因的转录。去除BAPN和随后的胶原蛋白重组后,LpS1转录恢复。使用氯霉素乙酰转移酶(CAT)报告基因试验,我们显示LpS1-beta启动子从-108到+17的125 bp区域包含ECM响应元件(ECM RE)。将125bp区域插入到不受ECM破坏影响的pic.L.pictus的金属硫蛋白基因的启动子中,使融合的启动子成为ECM依赖性的。与内源性LpS1基因一样,由融合的LpS1-beta启动子指导的CAT活性在从ECM破坏中恢复的胚胎中恢复。位于近125 bp区域的称为近端G串的顺式作用元件发生突变,导致受ECM破坏的胚胎中的CAT活性水平与处于ECM完整的胚胎中的野生型LpS1-bet启动子的水平相等。这些结果表明,完整的ECM正常传递信号以抑制硼质外胚层细胞近端G弦的阻遏物活性。与这些结果一致的是我们的发现,结果表明,除了在外胚层中表达外,近端G字串突变还导致CAT基因在口腔外胚层细胞中表达。这些研究表明,在发育过程中,近端G弦可作为口腔外胚层LpS1基因负调控的结合位点。我们还检查了ECM破坏后结合近端G弦的反式作用因子。带移凝胶揭示了一组主要的较慢迁移的核蛋白,它们是从受ECM破坏的胚胎中束缚的,该胚胎结合了近端G弦。这项工作表明,ECM破坏会引发信号传导,从而诱导阻遏物与ECM RE结合和/或修饰ECM RE结合蛋白,进而抑制LpS1基因的活性。

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