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Corepressor-Dependent Silencing of Chromosomal Regions Encoding Neuronal Genes

机译:Corepressor依赖沉默的编码神经元基因的染色体区域。

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The molecular mechanisms by which central nervous system-specific genes are expressed only in the nervous system and repressed in other tissues remain a central issue in developmental and regulatory biology. Here, we report that the zinc-finger gene-specific repressor element RE-1 silencing transcription factoreuronal restricted silencing factor (REST/NRSF) can mediate extra-neuronal restriction by imposing either active repression via histone deacety-lase recruitment or long-term gene silencing using a distinct functional complex. Silencing of neuronal-specific genes requires the recruitment of an associated corepressor, CoREST, that serves as a functional molecular beacon for the recruitment of molecular machinery that imposes silencing across a chromosomal interval, including transcriptional units that do not themselves contain REST/NRSF response elements.
机译:中枢神经系统特异性基因仅在神经系统中表达并在其他组织中被抑制的分子机制仍然是发育和调节生物学的中心问题。在这里,我们报道锌指基因特异性阻遏物RE-1沉默转录因子/神经元限制性沉默因子(REST / NRSF)可以通过通过组蛋白脱乙酰基酶募集或长期抑制而施加主动抑制来介导神经外的限制性。使用独特的功能复合体进行术语基因沉默。沉默神经元特异性基因需要募集相关的核心加压因子CoREST,它充当功能性分子信标,用于募集在染色体区间内施加沉默的分子机制,包括本身不包含REST / NRSF反应元件的转录单位。

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