Suppr超能文献

全基因组差异甲基化分析鉴定出男性不育的甲基化特征。

Genome-wide differential methylation analyses identifies methylation signatures of male infertility.

机构信息

Division of Endocrinology, Central Drug Research Institute, Lucknow, India.

Department of Molecular and Human Genetics, Banaras Hindu University, Varanasi, India.

出版信息

Hum Reprod. 2018 Dec 1;33(12):2256-2267. doi: 10.1093/humrep/dey319.

Abstract

STUDY QUESTION

Do methylation changes in sperm DNA correlate with infertility?

STUDY ANSWER

Loss of spermatogenesis and fertility was correlated with 1680 differentially-methylated CpGs (DMCs) across 1052 genes.

WHAT IS KNOWN ALREADY

Methylation changes in a number of genes have been correlated with reduced sperm count and motility.

STUDY DESIGN, SIZE, DURATION: This case-control study used spermatozoal DNA from 38 oligo-/oligoastheno-zoospermic infertile patients and 26 normozoospermic fertile men.

PARTICIPANTS/MATERIALS, SETTINGS, METHODS: Genome-wide methylation analysis was undertaken using 450 K BeadChip on spermatozoal DNA from six infertile and six fertile men to identify DMCs. This was followed by deep sequencing of spermatozoal DNA from 32 infertile patients and 20 fertile controls.

MAIN RESULTS AND THE ROLE OF CHANCE

A total of 1680 DMCs were identified, out of which 1436 were hypermethylated and 244 were hypomethylated. Classification of DMCs according to the genes identified BCAN, CTNNA3, DLGAP2, GATA3, MAGI2 and TP73 among imprinted genes, SPATA5, SPATA7, SPATA16 and SPATA22 among spermatogenesis-associated genes, KDM4C and JMJD1C, EZH2 and HDAC4 among genes which regulate methylation and gene expression, HLA-C, HLA-DRB6 and HLA-DQA1 among complementation and immune response genes, and CRISPLD1, LPHN3 and CPEB2 among other genes. Genes showing significant differential methylation in deep sequencing, i.e. HOXB1, GATA3, EBF3, BCAN and TCERG1L, are strong candidates for further investigations. The role of chance was ruled out by deep sequencing of select genes.

LARGE-SCALE DATA: N/A.

LIMITATIONS, REASON FOR CAUTION: Genome-wide analyses are fairly accurate, but may not be exactly validated in replication studies across all DMCs. We used the 't' test in the genome-wide methylation analysis, whereas other tests could provide a more robust and powerful analysis.

WIDER IMPLICATIONS OF THE FINDINGS

DMCs can serve as markers for inclusion in infertility screening panels, particularly those in the genes showing differential methylation consistent with previous studies. The genes validated by deep sequencing are strong candidates for investigations of their roles in spermatogenesis.

STUDY FUNDING/COMPETING INTEREST(S): The study was funded by the Council of Scientific and Industrial Research (CSIR), Govt. of India with grant number BSC0101 awarded to Rajender Singh. None of the authors has any competing interest to declare.

摘要

研究问题

精子 DNA 的甲基化变化是否与不育有关?

研究结果

生精功能丧失和不育与 1052 个基因中的 1680 个差异甲基化 CpG(DMC)相关。

已知情况

许多基因的甲基化变化与精子数量和活力下降有关。

研究设计、大小、持续时间:本病例对照研究使用了 38 名少/弱精症不育患者和 26 名正常生育男性的精子 DNA 进行全基因组甲基化分析,以确定 DMC。随后对 32 名不育患者和 20 名正常生育对照的精子 DNA 进行深度测序。

参与者/材料、地点、方法:使用 450K BeadChip 在 6 名不育和 6 名正常生育男性的精子 DNA 上进行全基因组甲基化分析,以鉴定 DMC。随后对 32 名不育患者和 20 名正常生育对照的精子 DNA 进行深度测序。

主要结果和机遇的作用

共鉴定出 1680 个 DMC,其中 1436 个呈高甲基化,244 个呈低甲基化。根据基因分类的 DMC 确定了印迹基因中的 BCAN、CTNNA3、DLGAP2、GATA3、MAGI2 和 TP73,生精相关基因中的 SPATA5、SPATA7、SPATA16 和 SPATA22,调节甲基化和基因表达的基因中的 KDM4C 和 JMJD1C、EZH2 和 HDAC4,补体和免疫反应基因中的 HLA-C、HLA-DRB6 和 HLA-DQA1,以及其他基因中的 CRISPLD1、LPHN3 和 CPEB2。在深度测序中显示出显著差异甲基化的基因,即 HOXB1、GATA3、EBF3、BCAN 和 TCERG1L,是进一步研究的候选基因。通过对选定基因进行深度测序,排除了机会的作用。

大数据

无。

局限性、谨慎的原因:全基因组分析相当准确,但在所有 DMC 的复制研究中可能无法完全验证。我们在全基因组甲基化分析中使用了“t”检验,而其他检验可以提供更强大和有力的分析。

研究结果的广泛意义

DMC 可以作为纳入不育症筛查面板的标记物,特别是那些与先前研究一致的显示差异甲基化的基因。通过深度测序验证的基因是研究其在生精作用的候选基因。

研究资金/利益冲突:该研究由印度政府科学与工业研究理事会(CSIR)资助,拨款号为 BSC0101,授予 Rajender Singh。作者均无利益冲突。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验