AbstractCytosine hydroxymethylation is an epigenetic control factor in higher organisms. New discoveries of the biological roles of hydroxymethylation serve to raise questions about how this epigenetic modification exerts its functions and how organisms discriminate cytosine hydroxymethylation from methylation. Here, we report investigations that reveal an effect of cytosine hydroxymethylation on mechanical properties of DNA under load. The findings are based on molecular force assay measurements and steered molecular dynamics simulations. Molecular force assay experiments identified significant effects of hydroxymethylation on stretching-induced strand separation; the underlying physical mechanism has been revealed by steered molecular dyn...
Background DNA shape analysis has demonstrated the potential to reveal structure-bas...
DNA base modifications diversify the genome and are essential players in development. Yet, their inf...
Cytosine methylation is an important epigenetic signalling mechanism that regulates gene expression....
We present a comprehensive, experimental and theoretical study of the impact of 5-hydroxymethylation...
DNA methylation plays an essential role in tran-scriptional control of organismal development in epi...
24 pags, 8 figs, 2 tabs. -- Supporting information can be found at the Publisher's webWe present a c...
Funder: Programa de Desarrollo de las Ciencias BasicasFunder: Institució Catalana de Recerca i Estud...
Cytosine methylation is a critical mechanism for epigenetic regulation on the molecular l...
<div><p>We report a series of molecular dynamics (MD) simulations of up to a microsecond combined si...
AbstractThere is increasing evidence for the presence of an alternative code imprinted in the genome...
We report a series of molecular dynamics (MD) simulations of up to a microsecond combined simulation...
DNA methylation, an epigenetic mechanism is claimed to play essential roles in development, aging an...
The discovery of cytosine hydroxymethylation (5hmC) suggested a simple means of demethylating DNA an...
AbstractThe structures of two DNA cytosine methyltransferases reveal two novel methods of gaining ac...
DNA base modifications diversify the genome and are essential players in development. Yet, their inf...
Background DNA shape analysis has demonstrated the potential to reveal structure-bas...
DNA base modifications diversify the genome and are essential players in development. Yet, their inf...
Cytosine methylation is an important epigenetic signalling mechanism that regulates gene expression....
We present a comprehensive, experimental and theoretical study of the impact of 5-hydroxymethylation...
DNA methylation plays an essential role in tran-scriptional control of organismal development in epi...
24 pags, 8 figs, 2 tabs. -- Supporting information can be found at the Publisher's webWe present a c...
Funder: Programa de Desarrollo de las Ciencias BasicasFunder: Institució Catalana de Recerca i Estud...
Cytosine methylation is a critical mechanism for epigenetic regulation on the molecular l...
<div><p>We report a series of molecular dynamics (MD) simulations of up to a microsecond combined si...
AbstractThere is increasing evidence for the presence of an alternative code imprinted in the genome...
We report a series of molecular dynamics (MD) simulations of up to a microsecond combined simulation...
DNA methylation, an epigenetic mechanism is claimed to play essential roles in development, aging an...
The discovery of cytosine hydroxymethylation (5hmC) suggested a simple means of demethylating DNA an...
AbstractThe structures of two DNA cytosine methyltransferases reveal two novel methods of gaining ac...
DNA base modifications diversify the genome and are essential players in development. Yet, their inf...
Background DNA shape analysis has demonstrated the potential to reveal structure-bas...
DNA base modifications diversify the genome and are essential players in development. Yet, their inf...
Cytosine methylation is an important epigenetic signalling mechanism that regulates gene expression....