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首页> 外文期刊>Trends in Neurosciences >The EGR family of transcription-regulatory factors: progress at the interface of molecular and systems neuroscience.
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The EGR family of transcription-regulatory factors: progress at the interface of molecular and systems neuroscience.

机译:EGR家族的转录调节因子:在分子和系统神经科学的界面上取得进展。

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摘要

The EGR family of transcription regulatory factors, which is implicated in orchestrating the changes in gene expression that underlie neuronal plasticity, has attracted the attention of both molecular and systems neuroscientists. In this article, the advances made in both these fields of research are reviewed. Recent systems-based studies underscore the remarkable sensitivity and specificity of the induction of the expression of genes encoding EGR-family members in naturally occurring plasticity paradigms. However, they also challenge conventional views of the role of this family in plasticity. Recent molecular studies have identified the gonadotropin subunit, luteinizing hormone beta, as an EGR1-regulated gene in vivo and uncovered an essential role for EGR3 in muscle-spindle development. In addition, the discovery of novel proteins that are capable of suppressing EGR-mediated transcription cast doubt over the prevalent assumption that changes in EGR mRNA or protein levels provide an accurate measure of EGR-driven transcriptional activity.
机译:EGR家族的转录调节因子,参与协调构成神经元可塑性的基因表达的变化,已经引起了分子和系统神经科学家的关注。在本文中,将回顾在这两个研究领域中取得的进展。最近基于系统的研究强调了自然发生的可塑性范式中编码EGR家族成员的基因表达诱导的显着敏感性和特异性。但是,他们也质疑有关该家族在可塑性中作用的传统观点。最近的分子研究已确定促性腺激素亚基(促黄体生成激素β)是体内EGR1调控的基因,并揭示了EGR3在肌肉主轴发育中的重要作用。另外,能够抑制EGR介导的转录的新型蛋白质的发现使人们普遍怀疑EGR mRNA或蛋白质水平的变化提供了EGR驱动的转录活性的准确测量。

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