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PMID: 25569824 已发表 · ppublish 英语

Nanopore-based assay for detection of methylation in double-stranded DNA fragments.

ACS nano ·第 9 卷 ·第 1 期 ·2015-12-01

Shim Jiwook, Kim Younghoon, Humphreys Gwendolyn I, Nardulli Ann M, Kosari Farhad, Vasmatzis George, Taylor William R, Ahlquist David A, Myong Sua, Bashir Rashid

摘要

DNA methylation is an epigenetic modification of DNA in which methyl groups are added at the 5-carbon position of cytosine. Aberrant DNA methylation, which has been associated with carcinogenesis, can be assessed in various biological fluids and potentially can be used as markers for detection of cancer. Analytically sensitive and specific assays for methylation targeting low-abundance and fragmented DNA are needed for optimal clinical diagnosis and prognosis. We present a nanopore-based direct methylation detection assay that circumvents bisulfite conversion and polymerase chain reaction amplification. Building on our prior work, we used methyl-binding proteins (MBPs), which selectively label the methylated DNA. The nanopore-based assay selectively detects methylated DNA/MBP complexes through a 19 nm nanopore with significantly deeper and prolonged nanopore ionic current blocking, while unmethylated DNA molecules were not detectable due to their smaller diameter. Discrimination of hypermethylated and unmethylated DNA on 90, 60, and 30 bp DNA fragments was demonstrated using sub-10 nm nanopores. Hypermethylated DNA fragments fully bound with MBPs are differentiated from unmethylated DNA at 2.1- to 6.5-fold current blockades and 4.5- to 23.3-fold transport durations. Furthermore, these nanopore assays can detect the CpG dyad in DNA fragments and could someday profile the position of methylated CpG sites on DNA fragments.

关键词
cancer detection methyl-binding protein methylated DNA nanopore single-molecule detection
文献信息
期刊
ACS nano
期刊简称
ACS Nano
发表日期
2015-12-01
收录日期
2015-01-27
更新日期
2015-01-27
语言
英语
国家/地区
United States
NLM ID
101313589
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