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首页> 外文期刊>G3: Genes, Genomes, Genetics >Base-Resolution Analysis of DNA Methylation Patterns Downstream of Dnmt3a in Mouse Na?ve B Cells
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Base-Resolution Analysis of DNA Methylation Patterns Downstream of Dnmt3a in Mouse Na?ve B Cells

机译:小鼠幼稚B细胞中Dnmt3a下游DNA甲基化模式的碱基解析分析

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摘要

The DNA methyltransferase, Dnmt3a , is dynamically regulated throughout mammalian B cell development and upon activation by antigenic stimulation. Dnmt3a inactivation in hematopoietic stem cells has been shown to drive B cell-related malignancies, including chronic lymphocytic leukemia, and associates with specific DNA methylation patterns in transformed cells. However, while it is clear that inactivation of Dnmt3a in hematopoietic stem cells has profound functional effects, the consequences of Dnmt3a inactivation in cells of the B lineage are unclear. To assess whether loss of Dnmt3a at the earliest stages of B cell development lead to DNA methylation defects that might impair function, we selectively inactivated Dnmt3a early in mouse B cell development and then utilized whole genome bisulfite sequencing to generate base-resolution profiles of Dnmt3asup+/+/sup and Dnmt3asup?/?/sup na?ve splenic B cells. Overall, we find that global methylation patterns are largely consistent between Dnmt3asup+/+/sup and Dnmt3asup?/?/sup na?ve B cells, indicating a minimal functional effect of DNMT3A in mature B cells. However, loss of Dnmt3a induced 449 focal DNA methylation changes, dominated by loss-of-methylation events. Regions found to be hypomethylated in Dnmt3asup?/?/sup na?ve splenic B cells were enriched in gene bodies of transcripts expressed in B cells, a fraction of which are implicated in B cell-related disease. Overall, the results from this study suggest that factors other than Dnmt3a are the major drivers for methylome maintenance in B cell development.
机译:DNA甲基转移酶Dnmt3a在整个哺乳动物B细胞发育过程中以及通过抗原刺激激活后均受到动态调节。造血干细胞中的Dnmt3a失活已显示出可驱动B细胞相关的恶性肿瘤,包括慢性淋巴细胞白血病,并与转化细胞中特定的DNA甲基化模式相关。但是,尽管很明显造血干细胞中Dnmt3a的失活具有深远的功能作用,但B谱系细胞中Dnmt3a失活的后果尚不清楚。为了评估Dnmt3a在B细胞发育的早期阶段是否丢失会导致DNA甲基化缺陷可能损害功能,我们在小鼠B细胞发育的早期选择性地使Dnmt3a失活,然后利用全基因组亚硫酸氢盐测序来生成Dnmt3a < sup> + / + 和Dnmt3a ?/?幼稚的脾B细胞。总体而言,我们发现Dnmt3a + / + 和Dnmt3a ?/?幼稚B细胞之间的总体甲基化模式在很大程度上是一致的,这表明DNMT3A在成熟细胞中的作用很小B细胞。但是,Dnmt3a的丢失会导致449个局灶性DNA甲基化变化,而甲基化丢失事件占主导地位。在Dnmt3a ?/?幼稚B细胞中发现低甲基化的区域富含B细胞表达的转录本的基因体,其中一部分与B细胞相关疾病有关。总体而言,这项研究的结果表明,Dnmt3a以外的其他因素是B细胞发育中甲基化组维持的主要驱动力。

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