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Protocol matters: which methylome are you actually studying? | LitMetric

Protocol matters: which methylome are you actually studying?

Epigenomics

Epigenetics Laboratory, Cancer Program, Garvan Institute of Medical Research, 384 Victoria Street, Darlinghurst, NSW 2010, Australia.

Published: August 2010

AI Article Synopsis

  • * This article reviews the impact of DNA sequence and bias introduced by genome-wide methylation technologies, along with bioinformatics tools that help address these issues.
  • * Currently, no single method effectively meets the requirements for high coverage, high resolution, and affordability in studying the methylome, but third-generation sequencing technologies may improve the situation.

Article Abstract

The field of epigenetics is now capitalizing on the vast number of emerging technologies, largely based on second-generation sequencing, which interrogate DNA methylation status and histone modifications genome-wide. However, getting an exhaustive and unbiased view of a methylome at a reasonable cost is proving to be a significant challenge. In this article, we take a closer look at the impact of the DNA sequence and bias effects introduced to datasets by genome-wide DNA methylation technologies and where possible, explore the bioinformatics tools that deconvolve them. There remains much to be learned about the performance of genome-wide technologies, the data we mine from these assays and how it reflects the actual biology. While there are several methods to interrogate the DNA methylation status genome-wide, our opinion is that no single technique suitably covers the minimum criteria of high coverage and, high resolution at a reasonable cost. In fact, the fraction of the methylome that is studied currently depends entirely on the inherent biases of the protocol employed. There is promise for this to change, as the third generation of sequencing technologies is expected to again 'revolutionize' the way that we study genomes and epigenomes.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3090160PMC
http://dx.doi.org/10.2217/epi.10.36DOI Listing

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