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BAF(BRG1/BRM相关因子)染色质重塑复合体在胎儿神经祖细胞中表现出乙醇敏感性,并调控miR-9-2编码基因位点的转录。

The BAF (BRG1/BRM-Associated Factor) chromatin-remodeling complex exhibits ethanol sensitivity in fetal neural progenitor cells and regulates transcription at the miR-9-2 encoding gene locus.

作者信息

Burrowes Sasha G, Salem Nihal A, Tseng Alexander M, Balaraman Sridevi, Pinson Marisa R, Garcia Cadianna, Miranda Rajesh C

机构信息

Dept. of Neuroscience and Experimental Therapeutics & Women's Health in Neuroscience Program, College of Medicine, Texas A&M Health Science Center, United States.

Dept. of Neuroscience and Experimental Therapeutics & Women's Health in Neuroscience Program, College of Medicine, Texas A&M Health Science Center, United States.

出版信息

Alcohol. 2017 May;60:149-158. doi: 10.1016/j.alcohol.2017.01.003. Epub 2017 Apr 7.

Abstract

Fetal alcohol spectrum disorders are a leading cause of intellectual disability worldwide. Previous studies have shown that developmental ethanol exposure results in loss of microRNAs (miRNAs), including miR-9, and loss of these miRNAs, in turn, mediates some of ethanol's teratogenic effects in the developing brain. We previously found that ethanol increased methylation at the miR-9-2 encoding gene locus in mouse fetal neural stem cells (NSC), advancing a mechanism for epigenetic silencing of this locus and consequently, miR-9 loss in NSCs. Therefore, we assessed the role of the BAF (BRG1/BRM-Associated Factor) complex, which disassembles nucleosomes to facilitate access to chromatin, as an epigenetic mediator of ethanol's effects on miR-9. Chromatin immunoprecipitation and DNAse I-hypersensitivity analyses showed that the BAF complex was associated with both transcriptionally accessible and heterochromatic regions of the miR-9-2 locus, and that disintegration of the BAF complex by combined knockdown of BAF170 and BAF155 resulted in a significant decrease in miR-9. We hypothesized that ethanol exposure would result in loss of BAF-complex function at the miR-9-2 locus. However, ethanol exposure significantly increased mRNA transcripts for maturation-associated BAF-complex members BAF170, SS18, ARID2, BAF60a, BRM/BAF190b, and BAF53b. Ethanol also significantly increased BAF-complex binding within an intron containing a CpG island and in the terminal exon encoding precursor (pre)-miR-9-2. These data suggest that the BAF complex may adaptively respond to ethanol exposure to protect against a complete loss of miR-9-2 in fetal NSCs. Chromatin remodeling factors may adapt to the presence of a teratogen, to maintain transcription of critical miRNA regulatory pathways.

摘要

胎儿酒精谱系障碍是全球智力残疾的主要原因。先前的研究表明,发育过程中接触乙醇会导致包括miR-9在内的微小RNA(miRNA)丢失,而这些miRNA的丢失反过来又介导了乙醇对发育中大脑的一些致畸作用。我们之前发现,乙醇会增加小鼠胎儿神经干细胞(NSC)中miR-9-2编码基因位点的甲基化,提出了该位点表观遗传沉默的机制,进而导致NSC中miR-9丢失。因此,我们评估了BAF(BRG1/BRM相关因子)复合体作为乙醇对miR-9影响的表观遗传介质的作用,该复合体可分解核小体以促进对染色质的访问。染色质免疫沉淀和DNA酶I超敏分析表明,BAF复合体与miR-9-2位点的转录可及区域和异染色质区域均相关,并且通过联合敲低BAF170和BAF155使BAF复合体解体导致miR-9显著减少。我们假设乙醇暴露会导致miR-9-2位点的BAF复合体功能丧失。然而,乙醇暴露显著增加了与成熟相关的BAF复合体成员BAF170、SS18、ARID2、BAF60a、BRM/BAF190b和BAF53b的mRNA转录本。乙醇还显著增加了BAF复合体在包含CpG岛的内含子和编码前体(pre)-miR-9-2的末端外显子内的结合。这些数据表明,BAF复合体可能对乙醇暴露产生适应性反应,以防止胎儿NSC中miR-9-2完全丢失。染色质重塑因子可能会适应致畸剂的存在,以维持关键miRNA调控途径的转录。

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