Changeability of the fully methylated status of the 15q11.2 region in induced pluripotent stem cells derived from a patient with Prader‐Willi syndrome

Hironobu Okuno, K. Nakabayashi, K. Abe, Takayuki Ando, Tsukasa Sanosaka, J. Kohyama, W. Akamatsu, M. Ohyama, Takao Takahashi, K. Kosaki, H. Okano
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引用次数: 12

Abstract

Prader‐Will syndrome (PWS) is characterized by hyperphagia, growth hormone deficiency and central hypogonadism caused by the dysfunction of the hypothalamus. Patients with PWS present with methylation abnormalities of the PWS‐imprinting control region in chromosome 15q11.2, subject to parent‐of‐origin‐specific methylation and controlling the parent‐of‐origin‐specific expression of other paternally expressed genes flanking the region. In theory, the reversal of hypermethylation in the hypothalamic cells could be a promising strategy for the treatment of PWS patients, since cardinal symptoms of PWS patients are correlated with dysfunction of the hypothalamus. The genome‐wide methylation status dramatically changes during the reprograming of somatic cells into induced pluripotent stem cells (iPSCs) and during the in vitro culture of iPSCs. Here, we tested the methylation status of the chromosome 15q11.2 region in iPSCs from a PWS patient using pyrosequencing and a more detailed method of genome‐wide DNA methylation profiling to reveal whether iPSCs with a partially unmethylated status for the chromosome 15q11.2 region exhibit global methylation aberrations. As a result, we were able to show that a fully methylated status for chromosome 15q11.2 in a PWS patient could be reversed to a partially unmethylated status in at least some of the PWS‐iPSC lines. Genome‐wide DNA methylation profiling revealed that the partial unmethylation occurred at differentially methylated regions located in chromosome 15q11.2, but not at other differentially methylated regions associated with genome imprinting. The present data potentially opens a door to cell‐based therapy for PWS patients and, possibly, patients with other disorders associated with genomic imprinting.
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Prader‐Willi综合征患者诱导多能干细胞中15q11.2区域完全甲基化状态的可变性
祈愿综合征(PWS)以下丘脑功能障碍引起的嗜食、生长激素缺乏和中枢性性腺功能减退为特征。PWS患者在染色体15q11.2的PWS印记控制区存在甲基化异常,受亲本起源特异性甲基化影响,并控制该区域两侧其他父本表达基因的亲本起源特异性表达。从理论上讲,由于PWS患者的主要症状与下丘脑功能障碍相关,下丘脑细胞超甲基化的逆转可能是治疗PWS患者的一种有希望的策略。在体细胞重编程为诱导多能干细胞(iPSCs)和iPSCs体外培养过程中,全基因组甲基化状态发生了显著变化。在这里,我们使用焦磷酸测序和更详细的全基因组DNA甲基化分析方法测试了来自PWS患者的iPSCs中染色体15q11.2区域的甲基化状态,以揭示染色体15q11.2区域部分未甲基化状态的iPSCs是否表现出全局甲基化畸变。因此,我们能够证明PWS患者的15q11.2染色体完全甲基化状态可以在至少一些PWS - iPSC系中逆转为部分非甲基化状态。全基因组DNA甲基化分析显示,部分非甲基化发生在位于染色体15q11.2的差异甲基化区域,而不发生在与基因组印迹相关的其他差异甲基化区域。目前的数据可能为PWS患者以及与基因组印迹相关的其他疾病患者的细胞治疗打开了一扇大门。
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