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Epigenetic Stability of Single-Cell Clones of Human Amniotic Fluid Mesenchymal Stem Cell

机译:人羊液间充质干细胞单细胞克隆的表观遗传稳定性

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Epigenetic regulation is critical for tissue differentiation. To further understand the epigenetic stability of a potentially useful cell source, we investigated the methylation characteristics of CpG islands of imprinted genes in human amniotic fluid mesenchymal stem cells (AFMSC), focusing on the differences among various single-cell clones and the effect of in vitro culture on the epigenetic changes of imprinted genes. Two amniotic fluid specimens were collected by amniocentesis, and a total of six single-cell clones AFMSC were derived using the in vitro cell culture method. We tested the differentially methylated regions (DMRs) of imprinted genes that are known to be important in cell biological functions or to be related to imprinting disorders, including H19, SNRPN, and KCNQ1OT1. DNA methylation statuses at DMRs of imprinted genes were analyzed by bisulfite genomic sequencing. Our results show that human AFMSC contain a unique epigenetic signature. The hypermethylation status of imprinting gene (H19 and KCNQWT1) in most single-cell clones of AFMSC was different from those of normal human blood cells. Nevertheless, H19 and KCNQ1OT1 possessed a substantial degree of epigenetic stability, despite differences in genetic background. Epigenetic instability of the imprinting gene (SNRPN) was observed during in vitro cell culture of human AFMSC. Our results urge further understanding of epigenetic status and epigenetic stability of AFMSC before it is applied in cell-replacement therapy.
机译:表观遗传调节对于组织分化至关重要。为了进一步了解潜在的细胞源的表观遗传稳定性,我们研究了人羊水间充质干细胞(AFMSC)中印迹基因CpG岛的甲基化特征,重点是各种单细胞克隆的差异及其效果体外培养对印迹基因的表观遗传变化。通过羊膜腔收集两种羊水样本,使用体外细胞培养方法来衍生六种单细胞克隆AFMSC。我们测试了已知在细胞生物学功能中的印迹基因的差异甲基化区域(DMRS),或者与印迹疾病有关,包括H19,SNRPN和KCNQ1OT1。通过双硫酸氢盐基因组测序分析DNA甲基化状态在印迹基因的DMRS中。我们的结果表明,人类AFMSC含有独特的表观遗传签名。在AFMSC的大多数单细胞克隆中印迹基因(H19和KCNQWT1)的高甲基化状态与正常人体血细胞的克隆不同。然而,尽管遗传背景存在差异,但H19和KCNQ1OT1具有大量的表观遗传稳定性。在人AFMSC的体外细胞培养过程中观察到印迹基因(SNRPN)的表观稳定性。我们的结果促请进一步了解AFMSC之前对AFMSC的表观遗传状态和表观遗传稳定性在细胞替代疗法之前。

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