Department of Molecular Endocrinology, ICMR-National Institute for Research in Reproductive Health, J.M. Street, Parel, Mumbai, Maharashtra, 400012, India.
Colin Jamura Lab, Institute for Stem Cell Biology and Regenerative Medicine (inStem), National Centre for Biological Sciences (NCBS), GKVK, Bellary Road, Bangalore, 560065, India.
Clin Epigenetics. 2019 Apr 11;11(1):61. doi: 10.1186/s13148-019-0657-6.
Women with polycystic ovary syndrome (PCOS) manifest a host of ovarian defects like impaired folliculogenesis, anovulation, and poor oocyte quality, which grossly affect their reproductive health. Addressing the putative epigenetic anomalies that tightly regulate these events is of foremost importance in this disorder. We therefore aimed to carry out DNA methylome profiling of cumulus granulosa cells and assess the methylation and transcript expression profiles of a few differentially methylated genes contributing to ovarian defects in PCOS. A total of 20 controls and 20 women with PCOS were selected from a larger cohort of women undergoing IVF, after carefully screening their sera and follicular fluids for hormonal and biochemical parameters. DNA extracted from cumulus granulosa cells of three women each, from control and PCOS groups was subjected to high-throughput, next generation bisulfite sequencing, using the Illumina HiSeq 2500® platform. Remaining samples were used for the validation of methylation status of some identified genes by pyrosequencing, and the transcript expression profiles of these genes were assessed by quantitative real-time PCR.
In all, 6486 CpG sites representing 3840 genes associated with Wnt signaling, G protein receptor, endothelin/integrin signaling, angiogenesis, chemokine/cytokine-mediated inflammation, etc., showed differential methylation in PCOS. Hypomethylation was noted in 2977 CpGs representing 2063 genes while 2509 CpGs within 1777 genes showed hypermethylation. Methylation differences were also noted in noncoding RNAs regulating several ovarian functions that are dysregulated in PCOS. Few differentially methylated genes such as aldo-keto reductase family 1 member C3, calcium-sensing receptor, resistin, mastermind-like domain 1, growth hormone-releasing hormone receptor and tumor necrosis factor, which predominantly contribute to hyperandrogenism, premature luteolysis, and oocyte development defects, were explored as novel epigenetic candidates in mediating ovarian dysfunction. Methylation profiles of these genes matched with our NGS findings, and their transcript expression patterns correlated with the gene hypo- or hypermethylation status.
Our findings suggest that the epigenetic dysregulation of genes involved in important processes associated with follicular development may contribute to ovarian defects observed in women with PCOS.
多囊卵巢综合征(PCOS)患者表现出多种卵巢缺陷,如卵泡生成受损、排卵障碍和卵母细胞质量差,这严重影响了她们的生殖健康。解决这些事件紧密调控的潜在表观遗传异常在这种疾病中至关重要。因此,我们旨在对卵丘颗粒细胞进行 DNA 甲基化组谱分析,并评估导致 PCOS 卵巢缺陷的少数差异甲基化基因的甲基化和转录表达谱。在仔细筛选血清和卵泡液中的激素和生化参数后,从接受 IVF 的更大队列中选择了 20 名对照和 20 名 PCOS 妇女。从对照组和 PCOS 组的三名妇女的每个卵丘颗粒细胞中提取 DNA,并使用 Illumina HiSeq 2500®平台进行高通量、下一代亚硫酸氢盐测序。其余样本用于通过焦磷酸测序验证一些鉴定基因的甲基化状态,并通过定量实时 PCR 评估这些基因的转录表达谱。
共有 6486 个 CpG 位点代表与 Wnt 信号、G 蛋白受体、内皮素/整合素信号、血管生成、趋化因子/细胞因子介导的炎症等相关的 3840 个基因,在 PCOS 中表现出差异甲基化。在 2063 个基因中,2977 个 CpG 呈现低甲基化,而在 1777 个基因中,2509 个 CpG 呈现高甲基化。在调节 PCOS 失调的几种卵巢功能的非编码 RNA 中也观察到了甲基化差异。少数差异甲基化基因,如aldo-keto 还原酶家族 1 成员 C3、钙敏感受体、抵抗素、类主基因样域 1、生长激素释放激素受体和肿瘤坏死因子,主要导致高雄激素血症、过早黄体溶解和卵母细胞发育缺陷,作为介导卵巢功能障碍的新表观遗传候选基因进行了探讨。这些基因的甲基化谱与我们的 NGS 发现相匹配,其转录表达模式与基因低甲基化或高甲基化状态相关。
我们的研究结果表明,与卵泡发育相关的重要过程相关基因的表观遗传失调可能导致 PCOS 患者观察到的卵巢缺陷。