Gunma University Graduate School of Medicine, Department of Pediatrics, Maebashi, 371-8511, Japan.
Gunma University Graduate School of Medicine, Department of Pediatrics, Maebashi, 371-8511, Japan; University of Pennsylvania, Perelman School of Medicine, Institute for Regenerative Medicine, Department of Cell and Developmental Biology, Philadelphia, PA, 19104-5157, USA.
Neurosci Res. 2021 Dec;173:22-33. doi: 10.1016/j.neures.2021.05.011. Epub 2021 May 28.
Gene expression programs and concomitant chromatin regulation change dramatically during the maturation of postmitotic neurons. Subnuclear positioning of gene loci is relevant to transcriptional regulation. However, little is known about subnuclear genome positioning in neuronal maturation. Using cultured murine hippocampal neurons, we found genomic locus 14qD2 to be enriched with genes that are upregulated during neuronal maturation. Reportedly, the locus is homologous to human 8p21.3, which has been extensively studied in neuropsychiatry and neurodegenerative diseases. Mapping of the 14qD2 locus in the nucleus revealed that it was relocated from the nuclear periphery to the interior. Moreover, we found a concomitant decrease in lamin B1 expression. Overexpression of lamin B1 in neurons using a lentiviral vector prevented the relocation of the 14qD2 locus and repressed the transcription of the Egr3 gene on this locus. Taken together, our results suggest that reduced lamin B1 expression during the maturation of neurons is important for appropriate subnuclear positioning of the genome and transcriptional programs.
在有丝分裂后神经元的成熟过程中,基因表达程序和伴随的染色质调控发生了巨大变化。基因座的亚核定位与转录调控有关。然而,神经元成熟过程中核基因组定位的情况知之甚少。使用培养的鼠海马神经元,我们发现基因组位点 14qD2 富含在神经元成熟过程中上调的基因。据报道,该位点与人类 8p21.3 同源,该区域在神经精神疾病和神经退行性疾病中已被广泛研究。对核内 14qD2 位点的定位显示,它从核边缘重新定位到核内。此外,我们发现 lamin B1 的表达同时减少。使用慢病毒载体在神经元中过表达 lamin B1 可以阻止 14qD2 基因座的重新定位,并抑制该基因座上 Egr3 基因的转录。总之,我们的结果表明,神经元成熟过程中 lamin B1 表达的减少对于基因组和转录程序的适当亚核定位是很重要的。