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The Neuron-Restrictive Silencer Element–Neuron-Restrictive Silencer Factor System Regulates Basal and Endothelin 1-Inducible Atrial Natriuretic Peptide Gene Expression in Ventricular Myocytes

机译:神经元限制性沉默子元素-神经元限制性沉默子因子系统调节基础和内皮素1诱导心室利钠肽基因在心室肌细胞中的表达。

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摘要

Induction of the atrial natriuretic peptide (ANP) gene is a common feature of ventricular hypertrophy. A number of cis-acting enhancer elements for several transcriptional activators have been shown to play central roles in the regulation of ANP gene expression, but much less is known about contributions made by transcriptional repressors. The neuron-restrictive silencer element (NRSE), also known as repressor element 1, mediates repression of neuronal gene expression in nonneuronal cells. We found that NRSE, which is located in the 3′ untranslated region of the ANP gene, mediated repression of ANP promoter activity in ventricular myocytes and was also involved in the endothelin 1-induced increase in ANP gene transcription. The repression was conferred by a repressor protein, neuron-restrictive silencer factor (NRSF). NRSF associated with the transcriptional corepressor mSin3 and formed a complex with histone deacetylase (HDAC) in ventricular myocytes. Trichostatin A (TSA), a specific HDAC inhibitor, relieved NRSE-mediated repression of ANP promoter activity, and chromatin immunoprecipitation assays revealed the involvement of histone deacetylation in NRSE-mediated repression of ANP gene expression. Furthermore, in myocytes infected with recombinant adenovirus expressing a dominant-negative form of NRSF, the basal level of endogenous ANP gene expression was increased and a TSA-induced increase in ANP gene expression was apparently attenuated, compared with those in myocytes infected with control adenovirus. Our findings show that an NRSE-NRSF system plays a key role in the regulation of ANP gene expression by HDAC in ventricular myocytes and provide a new insight into the role of the NRSE-NRSF system outside the nervous system.
机译:心钠素的基因的诱导是心室肥大的共同特征。已经显示了用于多种转录激活子的许多顺式作用增强子在ANP基因表达的调节中起着核心作用,但是对于转录阻遏子的贡献知之甚少。神经元限制性沉默子元件(NRSE),也称为阻遏物元件1,介导非神经元细胞中神经元基因表达的抑制。我们发现位于ANP基因3'非翻译区的NRSE介导了心室肌细胞ANP启动子活性的抑制,并且还参与了内皮素1诱导的ANP基因转录的增加。抑制是由阻遏蛋白神经元限制性沉默因子(NRSF)赋予的。 NRSF与转录共抑制因子mSin3相关,并与心室肌细胞中的组蛋白脱乙酰基酶(HDAC)形成复合体。 Trichostatin A(TSA)是一种特异的HDAC抑制剂,可减轻NRSE介导的ANP启动子活性的抑制,染色质免疫沉淀测定表明组蛋白脱乙酰化与NRSE介导的ANP基因表达的抑制有关。此外,与感染了对照腺病毒的心肌细胞相比,感染了表达NRSF为显性负型的重组腺病毒的心肌细胞中,内源性ANP基因表达的基础水平增加,并且TSA诱导的ANP基因表达的增加明显减弱。 。我们的发现表明,NRSE-NRSF系统在心室肌细胞中HDAC调节ANP基因表达中起关键作用,并为神经系统外NRSE-NRSF系统的作用提供了新的见识。

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