Phosphorothioate (PT) modification by the dnd gene cluster is the first identified DNA backbone modification and has been shown to constitute a multifunctional epigenetic system. Despite a variety of advantages for hosting dnd systems, these systems are surprisingly distributed sporadically among contemporary microbial genomes. To address this ecological paradox, Jian et al. systematically investigated the occurrence and phylogeny of dnd systems in prokaryotes, and provided evidence to suggest that dnd systems have originated in ancient Cyanobacteria (probably Nostocales) after the Great Oxygenation Event
AbstractDNA phosphorothioation is widespread in many bacterial species. By homology analysis of the ...
DNA phosphorothioate (PT) modification, in which the non-bridging oxygen of the sugar-phosphate back...
Abstract Cytosine DNA methylation is an important epigenetic mark in eukaryotes that is involved in ...
Phosphorothioate (PT) modification of DNA, with sulfur replacing a nonbridging phosphate oxygen, was...
The chemical diversity of physiological DNA modifications has expanded with the identification of ph...
The Dnd DNA degradation phenotype was first observed during electrophoresis of genomic DNA from Stre...
© 2020 National Academy of Sciences. All rights reserved. Phosphorothioate (PT) DNA modifications-in...
Abstract Background A novel DNA phosphorothioate modification (DNA sulfur modification), in which on...
Synthetic phosphorothioate (PT) internucleotide linkages, in which a nonbridging oxygen is replaced ...
DNA phosphorothioate (PT) modification is a recently identified epigenetic modification that occurs ...
Recent progress made on epigenetic studies revealed the conservation of epigenetic features in deep ...
Bacterial phosphorothioate (PT) DNA modifications are incorporated by Dnd proteins A-E and often fun...
Background: Strains of Escherichia coli that are non-typeable by pulsed-field gel electrophoresis (P...
A wide variety of prokaryotes possess DNA modifications consisting of sequence-specific phosphorothi...
ABSTRACT Thymidylate kinases (TMPKs) play an essential role in DNA biosynthesis across all domains o...
AbstractDNA phosphorothioation is widespread in many bacterial species. By homology analysis of the ...
DNA phosphorothioate (PT) modification, in which the non-bridging oxygen of the sugar-phosphate back...
Abstract Cytosine DNA methylation is an important epigenetic mark in eukaryotes that is involved in ...
Phosphorothioate (PT) modification of DNA, with sulfur replacing a nonbridging phosphate oxygen, was...
The chemical diversity of physiological DNA modifications has expanded with the identification of ph...
The Dnd DNA degradation phenotype was first observed during electrophoresis of genomic DNA from Stre...
© 2020 National Academy of Sciences. All rights reserved. Phosphorothioate (PT) DNA modifications-in...
Abstract Background A novel DNA phosphorothioate modification (DNA sulfur modification), in which on...
Synthetic phosphorothioate (PT) internucleotide linkages, in which a nonbridging oxygen is replaced ...
DNA phosphorothioate (PT) modification is a recently identified epigenetic modification that occurs ...
Recent progress made on epigenetic studies revealed the conservation of epigenetic features in deep ...
Bacterial phosphorothioate (PT) DNA modifications are incorporated by Dnd proteins A-E and often fun...
Background: Strains of Escherichia coli that are non-typeable by pulsed-field gel electrophoresis (P...
A wide variety of prokaryotes possess DNA modifications consisting of sequence-specific phosphorothi...
ABSTRACT Thymidylate kinases (TMPKs) play an essential role in DNA biosynthesis across all domains o...
AbstractDNA phosphorothioation is widespread in many bacterial species. By homology analysis of the ...
DNA phosphorothioate (PT) modification, in which the non-bridging oxygen of the sugar-phosphate back...
Abstract Cytosine DNA methylation is an important epigenetic mark in eukaryotes that is involved in ...