Related Experiment Video
Updated: Jan 28, 2026

Methylated DNA Immunoprecipitation
Published on: January 2, 2009
Assessment and site-specific manipulation of DNA (hydroxy-)methylation during mouse corticogenesis
Florian Noack1, Abhijeet Pataskar2, Martin Schneider3
1CRTD-Center for Regenerative Therapies, School of Medicine, Technische Universität Dresden, Dresden, Germany.
Abstract:
Dynamic changes in DNA (hydroxy-)methylation are fundamental for stem cell differentiation. However, the signature of these epigenetic marks in specific cell types during corticogenesis is unknown. Moreover, site-specific manipulation of cytosine modifications is needed to reveal the significance and function of these changes. Here, we report the first assessment of (hydroxy-)methylation in neural stem cells, neurogenic progenitors, and newborn neurons during mammalian corticogenesis. We found that gain in hydroxymethylation and loss in methylation occur sequentially at specific cellular transitions during neurogenic commitment. We also found that these changes predominantly occur within enhancers of neurogenic genes up-regulated during neurogenesis and target of pioneer transcription factors. We further optimized the use of dCas9-Tet1 manipulation of (hydroxy-)methylation, locus-specifically, in vivo, showing the biological relevance of our observations for Dchs1, a regulator of corticogenesis involved in developmental malformations and cognitive impairment. Together, our data reveal the dynamics of cytosine modifications in lineage-related cell types, whereby methylation is reduced and hydroxymethylation gained during the neurogenic lineage concurrently with up-regulation of pioneer transcription factors and activation of enhancers for neurogenic genes.
More Related Videos
Related Concept Videos
Manipulation and Analysis
DNA Packaging
From DNA to Protein
Phase II Reactions: Methylation Reactions
The mechanism of methylation unfolds in two stages. The first stage sees a methyltransferase enzyme facilitating the transfer of a methyl group from S-adenosylmethionine (SAM) to the substrate, forming S-adenosylhomocysteine (SAH). The second stage involves further metabolism of SAH into homocysteine, which can be recycled...
The DNA Replication Fork
DNA Topoisomerases
Types and Mechanism of action
Topoisomerases are divided into two main types. ...

