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首页> 外文期刊>Molecular and Cellular Biology >ZNF536, a Novel Zinc Finger Protein Specifically Expressed in the Brain, Negatively Regulates Neuron Differentiation by Repressing Retinoic Acid-Induced Gene Transcription
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ZNF536, a Novel Zinc Finger Protein Specifically Expressed in the Brain, Negatively Regulates Neuron Differentiation by Repressing Retinoic Acid-Induced Gene Transcription

机译:ZNF536,一种在大脑中特异性表达的新型锌指蛋白,通过抑制视黄酸诱导的基因转录来负调控神经元的分化。

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Neuronal differentiation is tightly regulated by a variety of factors. In a search for neuron-specific genes, we identified a highly conserved novel zinc finger protein, ZNF536. We observed that ZNF536 is most abundant in the brain and, in particular, is expressed in the developing central nervous system and dorsal root ganglia and localized in the cerebral cortex, hippocampus, and hypothalamic area. During neuronal differentiation of P19 cells induced by retinoic acid (RA), ZNF536 expression is increased at an early stage, and it is maintained at a constant level in later stages. Overexpression of ZNF536 results in an inhibition of RA-induced neuronal differentiation, while depletion or mutation of the ZNF536 gene results in an enhancement of differentiation. We further demonstrated that ZNF536 inhibits expression of neuron-specific marker genes, possibly through the inhibition of RA response element-mediated transcriptional activity, as overexpression of RA receptor α can rescue the inhibitory role of ZNF536 in neuronal differentiation and neuron-specific gene expression. Our studies have identified a novel zinc finger protein that negatively regulates neuron differentiation.
机译:神经元分化受到多种因素的严格调控。在搜索神经元特异性基因时,我们鉴定了高度保守的新型锌指蛋白ZNF536。我们观察到ZNF536在大脑中含量最高,尤其是在发育中的中枢神经系统和背根神经节中表达,并位于大脑皮层,海马和下丘脑区域。在视黄酸(RA)诱导的P19细胞的神经元分化过程中,ZNF536表达在早期增加,并在以后阶段保持恒定水平。 ZNF536的过表达导致RA诱导的神经元分化的抑制,而ZNF536基因的耗竭或突变导致分化的增强。我们进一步证明ZNF536可能通过抑制RA反应元件介导的转录活性来抑制神经元特异性标记基因的表达,因为RA受体α的过表达可以拯救ZNF536在神经元分化和神经元特异性基因表达中的抑制作用。我们的研究发现了一种新型的锌指蛋白,它负调控神经元的分化。

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