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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >Genome-wide oxidative bisulfite sequencing identifies sex-specific methylation differences in the human placenta
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Genome-wide oxidative bisulfite sequencing identifies sex-specific methylation differences in the human placenta

机译:基因组型氧化亚硫酸氢盐测序识别人类胎盘的性别特异性甲基化差异

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摘要

DNA methylation is an important regulator of gene function. Fetal sex is associated with the risk of several specific pregnancy complications related to placental function. However, the association between fetal sex and placental DNA methylation remains poorly understood. We carried out whole-genome oxidative bisulfite sequencing in the placentas of two healthy female and two healthy male pregnancies generating an average genome depth of coverage of 25x. Most highly ranked differentially methylated regions (DMRs) were located on the X chromosome but we identified a 225 kb sex-specific DMR in the body of the CUB and Sushi Multiple Domains 1 (CSMD1) gene on chromosome 8. The sex-specific differential methylation pattern observed in this region was validated in additional placentas using in-solution target capture. In a new RNA-seq data set from 64 female and 67 male placentas, CSMD1 mRNA was 1.8-fold higher in male than in female placentas (P value = 8.5 x 10(-7), Mann-Whitney test). Exon-level quantification of CSMD1 mRNA from these 131 placentas suggested a likely placenta-specific CSMD1 isoform not detected in the 21 somatic tissues analyzed. We show that the gene body of an autosomal gene, CSMD1, is differentially methylated in a sex-and placental-specific manner, displaying sex-specific differences in placental transcript abundance.
机译:DNA甲基化是基因功能的重要调节因子。胎儿性与胎盘功能有关的几种特定妊娠并发症的风险有关。然而,胎儿性别和胎盘DNA甲基化之间的关联仍然明显差不多。我们在两名健康女性和两个健康男性怀孕的胎盘中进行了全基因组氧化亚硫酸氢盐测序,产生了平均基因组深度的覆盖率为25倍。最高度排名的差异甲基化区域(DMRS)位于X染色体上,但我们鉴定了幼崽体中的225kb性别特异性DMR和血型染色体上的寿司多个域1(CSMD1)基因8.性别特异性差异甲基化使用溶液靶捕获在另外的胎盘中验证了该区域中观察的图案。在来自64个雌性和67名雄性胎盘的新RNA-SEQ数据中,CSMD1 mRNA在雄性胎儿中高1.8倍(P值= 8.5×10(-7),MANN-WHITNEY测试)。来自这131个胎盘的CSMD1 mRNA的外显子水平定量表明在分析的21例体细胞组织中未检测到未检测到的胎盘特异性CSMD1同种型。我们表明,常染色体基因CSMD1的基因体以性别和胎盘特异性方式差异甲基化,表现出胎盘转录物丰富的性别特异性差异。

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