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人类诱导多能干细胞增殖过程中的差异性X染色体失活模式

Differential X Chromosome Inactivation Patterns during the Propagation of Human Induced Pluripotent Stem Cells.

作者信息

Andoh-Noda Tomoko, Akamatsu Wado, Miyake Kunio, Kobayashi Tetsuro, Ohyama Manabu, Kurosawa Hiroshi, Kubota Takeo, Okano Hideyuki

机构信息

Department of Physiology, Keio University School of Medicine, Tokyo, Japan.

出版信息

Keio J Med. 2017 Mar 25;66(1):1-8. doi: 10.2302/kjm.2016-0015-OA. Epub 2017 Jan 20.

Abstract

Human induced pluripotent stem cells (hiPSCs) represent a potentially useful tool for studying the molecular mechanisms of disease thanks to their ability to generate patient-specific hiPSC clones. However, previous studies have reported that DNA methylation profiles, including those for imprinted genes, may change during passaging of hiPSCs. This is particularly problematic for hiPSC models of X-linked disease, because unstable X chromosome inactivation status may affect the detection of phenotypes. In the present study, we examined the epigenetic status of hiPSCs derived from patients with Rett syndrome, an X-linked disease, during long-term culture. To analyze X chromosome inactivation, we used a methylation-specific polymerase chain reaction (MSP) to assay the human androgen receptor locus (HUMARA). We found that single cell-derived hiPSC clones exhibit various states of X chromosome inactivation immediately after clonal isolation, even when established simultaneously from a single donor. X chromosome inactivation states remain variable in hiPSC clones at early passages, and this variability may affect cellular phenotypes characteristic of X-linked diseases. Careful evaluation of X chromosome inactivation in hiPSC clones, particularly in early passages, by methods such as HUMARA-MSP, is therefore important when using patient-specific hiPSCs to model X-linked disease.

摘要

人类诱导多能干细胞(hiPSC)因其能够生成患者特异性的hiPSC克隆,成为研究疾病分子机制的潜在有用工具。然而,先前的研究报道,包括印记基因的DNA甲基化谱,可能在hiPSC传代过程中发生变化。这对于X连锁疾病的hiPSC模型来说尤其成问题,因为不稳定的X染色体失活状态可能会影响表型的检测。在本研究中,我们检测了来自雷特综合征(一种X连锁疾病)患者的hiPSC在长期培养过程中的表观遗传状态。为了分析X染色体失活,我们使用甲基化特异性聚合酶链反应(MSP)来检测人类雄激素受体基因座(HUMARA)。我们发现,单细胞来源的hiPSC克隆在克隆分离后立即表现出各种X染色体失活状态,即使是从单个供体同时建立的。在早期传代的hiPSC克隆中,X染色体失活状态仍然可变,这种变异性可能会影响X连锁疾病的细胞表型。因此,当使用患者特异性hiPSC来模拟X连锁疾病时,通过HUMARA-MSP等方法仔细评估hiPSC克隆中的X染色体失活,尤其是在早期传代时,非常重要。

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