DNA phosphorothioate (PT) modification is a novel modification that occurs on the DNA backbone, which refers to a non-bridging phosphate oxygen replaced by sulfur. This exclusive DNA modification widely distributes in bacteria but has not been found in eukaryotes to date. PT modification renders DNA nuclease tolerance and serves as a constitute element of bacterial restriction–modification (R–M) defensive system and more biological functions are awaiting exploration. Identification and quantification of the bacterial PT modifications are thus critical to better understanding their biological functions. This work describes three detailed methods derived from iodine-induced specific cleavage-an iodine-induced cleavage assay (ICA),...
Abstract Background A novel DNA phosphorothioate modification (DNA sulfur modification), in which on...
The DNA phosphorothioate (PT) modification existing in many prokaryotes, including bacterial pathoge...
In recent years, many artificial and naturally occurring catalytic nucleic acids molecules have been...
Phosphorothioate (PT) modifications of the DNA backbone, widespread in prokaryotes, are first identi...
Phosphorothioate (PT) modifications of the DNA backbone, widespread in prokaryotes, are first identi...
Iodine-induced cleavage at phosphorothioate DNA (PT-DNA) is characterized by extremely high sensitiv...
Bacterial phosphorothioate (PT) DNA modifications are incorporated by Dnd proteins A-E and often fun...
The chemical diversity of physiological DNA modifications has expanded with the identification of ph...
Synthetic phosphorothioate (PT) internucleotide linkages, in which a nonbridging oxygen is replaced ...
Phosphorothioate (PT) modification of DNA, with sulfur replacing a nonbridging phosphate oxygen, was...
A wide variety of prokaryotes possess DNA modifications consisting of sequence-specific phosphorothi...
Phosphorothioation (PT) involves the replacement of a nonbridging phosphate oxygen on the DNA backbo...
DNA phosphorothioate (PT) modification is a recently identified epigenetic modification that occurs ...
Genomic modification by sulfur in the form of phosphorothioate (PT) is widespread among prokaryotes,...
Diverse bacteria contain DNA with sulfur incorporated stereo-specifically into their DNA backbone at...
Abstract Background A novel DNA phosphorothioate modification (DNA sulfur modification), in which on...
The DNA phosphorothioate (PT) modification existing in many prokaryotes, including bacterial pathoge...
In recent years, many artificial and naturally occurring catalytic nucleic acids molecules have been...
Phosphorothioate (PT) modifications of the DNA backbone, widespread in prokaryotes, are first identi...
Phosphorothioate (PT) modifications of the DNA backbone, widespread in prokaryotes, are first identi...
Iodine-induced cleavage at phosphorothioate DNA (PT-DNA) is characterized by extremely high sensitiv...
Bacterial phosphorothioate (PT) DNA modifications are incorporated by Dnd proteins A-E and often fun...
The chemical diversity of physiological DNA modifications has expanded with the identification of ph...
Synthetic phosphorothioate (PT) internucleotide linkages, in which a nonbridging oxygen is replaced ...
Phosphorothioate (PT) modification of DNA, with sulfur replacing a nonbridging phosphate oxygen, was...
A wide variety of prokaryotes possess DNA modifications consisting of sequence-specific phosphorothi...
Phosphorothioation (PT) involves the replacement of a nonbridging phosphate oxygen on the DNA backbo...
DNA phosphorothioate (PT) modification is a recently identified epigenetic modification that occurs ...
Genomic modification by sulfur in the form of phosphorothioate (PT) is widespread among prokaryotes,...
Diverse bacteria contain DNA with sulfur incorporated stereo-specifically into their DNA backbone at...
Abstract Background A novel DNA phosphorothioate modification (DNA sulfur modification), in which on...
The DNA phosphorothioate (PT) modification existing in many prokaryotes, including bacterial pathoge...
In recent years, many artificial and naturally occurring catalytic nucleic acids molecules have been...