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首页> 外文期刊>The biochemical journal >5-Aminolaevulinate synthase gene promoter contains two cAMP-response element (CRE)-like sites that confer positive and negative responsiveness to CRE-binding protein (CREB)
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5-Aminolaevulinate synthase gene promoter contains two cAMP-response element (CRE)-like sites that confer positive and negative responsiveness to CRE-binding protein (CREB)

机译:5-氨基油酰戊酸合酶基因启动子包含两个cAMP反应元件(CRE)样位点,赋予对CRE结合蛋白(CREB)的正响应和负响应

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摘要

pThe first and rate-controlling step of the haem biosynthetic pathway in mammals and fungi is catalysed by the mitochondrial-matrix enzyme 5-aminolaevulinate synthase (ALAS). The purpose of this work was to explore the molecular mechanisms involved in the cAMP regulation of rat housekeeping ALAS gene expression. Thus we have examined the ALAS promoter for putative transcription-factor-binding sites that may regulate transcription in a cAMP-dependent protein kinase (PKA)-induced context. Applying both transient transfection assays with a chloramphenicol acetyltransferase reporter gene driven by progressive ALAS promoter deletions in HepG2, and electrophoresis mobility-shift assays we have identified two putative cAMP-response elements (CREs) at positions -38 and -142. Functional analysis showed that both CRE-like sites were necessary for complete PKA induction, but only one for basal expression. Co-transfection with a CRE-binding protein (CREB) expression vector increased PKA-mediated induction of ALAS promoter transcriptional activity. However, in the absence of co-transfected PKA, CREB worked as a specific repressor for ALAS promoter activity. A CREB mutant deficient in a PKA phosphorylation site was unable to induce expression of the ALAS gene but could inhibit non-stimulated promoter activity. Furthermore, a DNA-binding mutant of CREB did not interfere with ALAS promoter basal activity. Site-directed-mutagenesis studies showed that only the nearest element to the transcription start site was able to inhibit the activity of the promoter. Therefore, we conclude that CREB, through its binding to CRE-like sites, mediates the effect of cAMP on ALAS gene expression. Moreover, we propose that CREB could also act as a repressor of ALAS transcription, but is able to reverse its role after PKA activation. Dephosphorylated CREB would interfere in a spatial-disposition-dependent manner with the transcriptional machinery driving inhibition of gene expression./p
机译:哺乳动物和真菌中的血红素生物合成途径的第一步和速率控制步骤是由线粒体基质酶5-氨基乙酰戊酸合酶(ALAS)催化的。这项工作的目的是探讨参与大鼠看家ALAS基因表达的cAMP调控的分子机制。因此,我们已经检查了ALAS启动子的假定转录因子结合位点,该位点可能在cAMP依赖性蛋白激酶(PKA)诱导的环境中调节转录。应用由HepG2中渐进性ALAS启动子缺失驱动的氯霉素乙酰基转移酶报告基因的瞬时转染测定和电泳迁移率迁移测定,我们在位置-38和-142处确定了两个假定的cAMP反应元件(CRE)。功能分析表明,两个CRE样位点对于完整的PKA诱导都是必需的,但仅一个用于基础表达。与CRE结合蛋白(CREB)表达载体的共转染增加了PKA介导的ALAS启动子转录活性的诱导。但是,在不存在共转染的PKA的情况下,CREB可以作为ALAS启动子活性的特异性阻遏物。缺乏PKA磷酸化位点的CREB突变体不能诱导ALAS基因的表达,但可以抑制未刺激的启动子活性。此外,CREB的DNA结合突变体不会干扰ALAS启动子的基础活性。定点诱变研究表明,只有最接近转录起始位点的元件才能抑制启动子的活性。因此,我们得出结论,CREB通过与CRE样位点的结合,介导了cAMP对ALAS基因表达的影响。此外,我们建议CREB还可以充当ALAS转录的阻遏物,但是能够在PKA激活后逆转其作用。去磷酸化的CREB会以空间配置依赖的方式干扰转录机制,从而抑制基因表达。

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