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MEF2转录程序的全基因组分析揭示了突触靶基因和神经元活动依赖性聚腺苷酸化位点选择。

Genome-wide analysis of MEF2 transcriptional program reveals synaptic target genes and neuronal activity-dependent polyadenylation site selection.

作者信息

Flavell Steven W, Kim Tae-Kyung, Gray Jesse M, Harmin David A, Hemberg Martin, Hong Elizabeth J, Markenscoff-Papadimitriou Eirene, Bear Daniel M, Greenberg Michael E

机构信息

FM Kirby Neurobiology Center, Children's Hospital, and Department of Neurology and Neurobiology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Neuron. 2008 Dec 26;60(6):1022-38. doi: 10.1016/j.neuron.2008.11.029.

Abstract

Although many transcription factors are known to control important aspects of neural development, the genome-wide programs that are directly regulated by these factors are not known. We have characterized the genetic program that is activated by MEF2, a key regulator of activity-dependent synapse development. These MEF2 target genes have diverse functions at synapses, revealing a broad role for MEF2 in synapse development. Several of the MEF2 targets are mutated in human neurological disorders including epilepsy and autism spectrum disorders, suggesting that these disorders may be caused by disruption of an activity-dependent gene program that controls synapse development. Our analyses also reveal that neuronal activity promotes alternative polyadenylation site usage at many of the MEF2 target genes, leading to the production of truncated mRNAs that may have different functions than their full-length counterparts. Taken together, these analyses suggest that the ubiquitously expressed transcription factor MEF2 regulates an intricate transcriptional program in neurons that controls synapse development.

摘要

虽然已知许多转录因子控制神经发育的重要方面,但这些因子直接调控的全基因组程序尚不清楚。我们已经对由MEF2激活的遗传程序进行了表征,MEF2是活性依赖性突触发育的关键调节因子。这些MEF2靶基因在突触处具有多种功能,揭示了MEF2在突触发育中的广泛作用。MEF2的几个靶基因在包括癫痫和自闭症谱系障碍在内的人类神经疾病中发生突变,这表明这些疾病可能是由控制突触发育的活性依赖性基因程序的破坏引起的。我们的分析还表明,神经元活动促进了许多MEF2靶基因上可变聚腺苷酸化位点的使用,导致产生截短的mRNA,其功能可能与其全长对应物不同。综上所述,这些分析表明普遍表达的转录因子MEF2调节神经元中控制突触发育的复杂转录程序。

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Post-transcriptional regulation of the transcriptional apparatus in neuronal development.神经元发育中转录装置的转录后调控。
Front Mol Neurosci. 2024 Dec 23;17:1483901. doi: 10.3389/fnmol.2024.1483901. eCollection 2024.

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