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Nerve growth factor-induced derepression of peripherin gene expression is associated with alterations in proteins binding to a negative regulatory element.

机译:神经生长因子诱导的外周蛋白基因表达的抑制与与负调控元件结合的蛋白质变化有关。

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摘要

The peripherin gene, which encodes a neuronal-specific intermediate filament protein, is transcriptionally induced with a late time course when nerve growth factor (NGF) stimulates PC12 cells to differentiate into neurons. We have studied its transcriptional regulation in order to better understand the neuronal-specific end steps of the signal transduction pathway of NGF. By 5' deletion mapping of the peripherin promoter, we have localized two positive regulatory elements necessary for full induction by NGF: a distal positive element and a proximal constitutive element within 111 bp of the transcriptional start site. In addition, there is a negative regulatory element (NRE; -179 to -111), the deletion of which results in elevated basal expression of the gene. Methylation interference footprinting of the NRE defined a unique sequence, GGCAGGGCGCC, as the binding site for proteins present in nuclear extracts from both undifferentiated and differentiated PC12 cells. However, DNA mobility shift assays using an oligonucleotide probe containing the footprinted sequence demonstrate a prominent retarded complex in extracts from undifferentiated PC12 cells which migrates with slower mobility than do the complexes produced by using differentiated PC12 cell extract. Transfection experiments using peripherin-chloramphenicol acetyltransferase constructs in which the footprinted sequence has been mutated confirm that the NRE has a functional, though not exclusive, role in repressing peripherin expression in undifferentiated and nonneuronal cells. We propose a two-step model of activation of peripherin by NGF in which dissociation of a repressor from the protein complex at the NRE, coupled with a positive signal from the distal positive element, results in depression of the gene.
机译:当神经生长因子(NGF)刺激PC12细胞分化为神经元时,编码一种神经元特异性中间丝蛋白的外围蛋白基因在后期被转录诱导。为了更好地了解NGF信号转导途径的神经元特定的最终步骤,我们研究了其转录调控。通过外围蛋白启动子的5'缺失作图,我们已经定位了NGF完全诱导所必需的两个阳性调控元件:在转录起始位点111 bp内的远端阳性元件和近端组成元件。此外,还有一个负调控元件(NRE; -179至-111),其缺失导致该基因的基础表达升高。 NRE的甲基化干扰足迹确定了一个独特的序列GGCAGGGCGCC,作为未分化和分化PC12细胞核提取物中蛋白质的结合位点。但是,使用包含足迹序列的寡核苷酸探针进行的DNA迁移分析表明,未分化PC12细胞提取物中的显着延迟复合物迁移率比使用分化PC12细胞提取物产生的复合物迁移速度慢。使用外围蛋白-氯霉素乙酰转移酶构建体(其中足迹序列已发生突变)的转染实验证实,NRE在抑制未分化和非神经元细胞中的外围蛋白表达中具有功能性(但不是排他性的)作用。我们提出了一种由NGF激活周围蛋白的两步模型,其中阻遏物从NRE处的蛋白复合物上解离,再加上远端阳性元件的阳性信号,导致该基因的抑制。

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