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探讨印迹控制中心在 PWS/AS 责任区域中的独特功能:来自具有不同大小微缺失病例的基于阵列的甲基化分析的发现。

Exploring the unique function of imprinting control centers in the PWS/AS-responsible region: finding from array-based methylation analysis in cases with variously sized microdeletions.

机构信息

Department of Molecular Endocrinology, National Center for Child Health and Development, 2-10-1 Ohkura, Setagaya-ku, Tokyo, 157-8535, Japan.

Department of Pediatrics, Kanazawa Medical University, Kanazawa, 920-1192, Japan.

出版信息

Clin Epigenetics. 2019 Feb 28;11(1):36. doi: 10.1186/s13148-019-0633-1.

Abstract

BACKGROUND

Human 15q11-13 is responsible for Prader-Willi syndrome (PWS) and Angelman syndrome (AS) and includes several imprinted genes together with bipartite elements named AS-IC (imprinting center) and PWS-IC. These concertedly confer allele specificity on 15q11-13. Here, we report DNA methylation status of 15q11-13 and other autosomal imprinted differentially methylated regions (iDMRs) in cases with various deletions within the PWS/AS-responsible region.

METHODS

We performed array-based methylation analysis and examined the methylation status of CpG sites in 15q11-13 and in 71 iDMRs in six cases with various microdeletions, eight cases with conventional deletions within 15q11-13, and healthy controls.

RESULTS

We detected 89 CpGs in 15q11-13 showing significant methylation changes in our cases. Of them, 14 CpGs in the SNORD116s cluster presented slight hypomethylation in the PWS cases and hypermethylation in the AS cases. No iDMRs at regions other than 15q11-13 showed abnormal methylation.

CONCLUSIONS

We identified CpG sites and regions in which methylation status is regulated by AS-IC and PWS-IC. This result indicated that each IC had unique functions and coordinately regulated the DNA methylation of respective alleles. In addition, only aberrant methylation at iDMRs in 15q11-13 leads to the development of the phenotypes in our cases.

摘要

背景

人类 15q11-13 负责 Prader-Willi 综合征(PWS)和 Angelman 综合征(AS),并包含几个印记基因,以及名为 AS-IC(印记中心)和 PWS-IC 的二分体元件。这些元件共同赋予 15q11-13 等位基因特异性。在这里,我们报告了在 PWS/AS 负责区域内存在各种缺失的情况下,15q11-13 和其他常染色体印记差异甲基化区域(iDMR)的 DNA 甲基化状态。

方法

我们进行了基于阵列的甲基化分析,并检查了 6 例具有各种微缺失、8 例 15q11-13 内常规缺失的病例和健康对照者中 15q11-13 及 71 个 iDMR 的 CpG 位点的甲基化状态。

结果

我们在病例中检测到 89 个在 15q11-13 中显示显著甲基化变化的 CpG 位点。其中,SNORD116s 簇中的 14 个 CpG 位点在 PWS 病例中表现出轻度低甲基化,在 AS 病例中表现出高度甲基化。除 15q11-13 以外的区域的 iDMR 没有异常甲基化。

结论

我们鉴定了由 AS-IC 和 PWS-IC 调节的 CpG 位点和区域。这一结果表明,每个 IC 都具有独特的功能,并协调调节各自等位基因的 DNA 甲基化。此外,只有 15q11-13 中 iDMR 的异常甲基化才导致我们病例表型的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74ab/6396496/5651a3fb2afc/13148_2019_633_Fig1_HTML.jpg

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