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亲环素A可保护印记基因3免受高甲基化和组蛋白失活修饰的影响。

Cyclophilin a protects Peg3 from hypermethylation and inactive histone modification.

作者信息

Lu Ying-Chun, Song Jun, Cho Hee-Yeon, Fan Guoping, Yokoyama Kazunari K, Chiu Robert

机构信息

Dental Research Institute, UCLA School of Dentistry and Department of Human Genetics, UCLA, Los Angeles, California 90095, USA.

出版信息

J Biol Chem. 2006 Dec 22;281(51):39081-7. doi: 10.1074/jbc.M606687200. Epub 2006 Oct 26.

Abstract

Imprinted genes are expressed from only one of the parental alleles and are marked epigenetically by DNA methylation and histone modifications. Disruption of normal imprinting leads to abnormal embryogenesis, certain inherited diseases, and is associated with various cancers. In the context of screening for the gene(s) responsible for the alteration of phenotype in cyclophilin A knockdown (CypA-KD) P19 cells, we observed a silent paternally expressed gene, Peg3. Treatment of CypA-KD P19 cells with the DNA demethylating agent 5-aza-dC reversed the silencing of Peg3 biallelically. Genomic bisulfite sequencing and methylation-specific PCR revealed DNA hypermethylation in CypA-KD P19 cells, as the normally unmethylated paternal allele acquired methylation that resulted in biallelic methylation of Peg3. Chromatin immunoprecipitation assays indicated a loss of acetylation and a gain of lysine 9 trimethylation in histone 3, as well as enhanced DNA methyltransferase 1 and MBD2 binding on the cytosine-guanine dinucleotide (CpG) islands of Peg3. Our results indicate that DNA hypermethylation on the paternal allele and allele-specific acquisition of histone methylation leads to silencing of Peg3 in CypA-KD P19 cells. This study is the first demonstration of the epigenetic function of CypA in protecting the paternal allele of Peg3 from DNA methylation and inactive histone modifications.

摘要

印记基因仅从亲本等位基因中的一个表达,并通过DNA甲基化和组蛋白修饰进行表观遗传标记。正常印记的破坏会导致异常胚胎发生、某些遗传性疾病,并与各种癌症相关。在筛选亲环素A敲低(CypA-KD)P19细胞中负责表型改变的基因时,我们观察到一个沉默的父系表达基因Peg3。用DNA去甲基化剂5-氮杂-2'-脱氧胞苷(5-aza-dC)处理CypA-KD P19细胞可双等位基因地逆转Peg3的沉默。基因组亚硫酸氢盐测序和甲基化特异性PCR显示CypA-KD P19细胞中存在DNA高甲基化,因为正常未甲基化的父系等位基因获得了甲基化,导致Peg3的双等位基因甲基化。染色质免疫沉淀分析表明组蛋白3中乙酰化缺失和赖氨酸9三甲基化增加,以及DNA甲基转移酶1和MBD2在Peg3的胞嘧啶-鸟嘌呤二核苷酸(CpG)岛上的结合增强。我们的结果表明,父系等位基因上的DNA高甲基化和组蛋白甲基化的等位基因特异性获得导致CypA-KD P19细胞中Peg3沉默。本研究首次证明了CypA在保护Peg3的父系等位基因免受DNA甲基化和无活性组蛋白修饰方面的表观遗传功能。

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