Main menu

Nanopore sequencing enables comprehensive transposable element epigenomic profiling


In cancers, but not healthy tissues, LINE-1 “jumping genes” insert throughout the genome, sometimes activating oncogenes and disrupting tumour suppressor genes. While CpG methylation regulates LINE-1 activity, the locus-specific methylation landscape of mobile human TEs has to date proven largely inaccessible. Here, we apply new computational tools and long-read nanopore sequencing to directly infer CpG methylation of LINE-1s in paired tumour and non-tumour liver as well as healthy tissues. We find pronounced demethylation of LINE-1s in cancer, allele-specific LINE-1 methylation, and demethylation of aberrantly expressed young LINE-1s in normal tissues. Finally, we recover the complete sequences of tumour-specific LINE-1 insertions.

Authors: Seth Cheetham

入门指南

购买 MinION 启动包 Nanopore 商城 测序服务提供商 全球代理商

纳米孔技术

订阅 Nanopore 更新 资源库及发表刊物 什么是 Nanopore 社区

关于 Oxford Nanopore

新闻 公司历程 可持续发展 领导团队 媒体资源和联系方式 投资者 合作者 在 Oxford Nanopore 工作 职位空缺 商业信息 BSI 27001 accreditationBSI 90001 accreditationBSI mark of trust
Chinese flag