» DNA methylation and lncRNA

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image: Leaving an Imprint

Leaving an Imprint

By | August 1, 2015

Among the first to discover epigenetic reprogramming during mammalian development, Wolf Reik has been studying the dynamics of the epigenome for 30 years.

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image: Messages in the Noise

Messages in the Noise

By | August 1, 2015

After spending more than a decade developing tools to study patterns in gene sequences, bioinformaticians are now working on programs to analyze epigenomics data.


image: Yun “Nancy” Huang: Eager for Epigenetics

Yun “Nancy” Huang: Eager for Epigenetics

By | August 1, 2015

Assistant Professor, Institute of Biosciences and Technology, Texas A&M Health Science Center, Houston. Age: 35


image: Not So Noncoding

Not So Noncoding

By | June 1, 2015

An RNA thought to be noncoding in fact encodes a small protein that regulates calcium uptake in muscle.


image: Pushing the Limits

Pushing the Limits

By | February 1, 2015

A guide to the newest techniques for examining epigenetics in single cells


image: Unmasking Secret Identities

Unmasking Secret Identities

By | February 1, 2014

A tour of techniques for measuring DNA hydroxymethylation


image: Top 10 Innovations 2013

Top 10 Innovations 2013

By | December 1, 2013

The Scientist’s annual competition uncovered a bonanza of interesting technologies that made their way onto the market and into labs this year.

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image: An Epi Phenomenon

An Epi Phenomenon

By | December 1, 2012

While exploring the genetics of a rare type of tumor, Stephen Baylin discovered an epigenetic modification that occurs in most every cancer—a finding he’s helping bring to the clinic.


image: The Epigenetic Lnc

The Epigenetic Lnc

By | October 1, 2012

Long non-protein-coding RNA (lncRNA) sequences are often transcribed from the opposite, or antisense, strand of a protein coding gene. In the past few years, research has shown that these lncRNAs play a number of regulatory roles in the cell. For exa


image: Lamarck and the Missing Lnc

Lamarck and the Missing Lnc

By | October 1, 2012

Epigenetic changes accrued over an organism’s lifetime may leave a permanent heritable mark on the genome, through the help of long noncoding RNAs.



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