Cell-cycle progression requires careful regulation to ensure accurate propagation of genetic material to the daughter cells. Although many cell-cycle regulators are evolutionarily conserved in the protozoan parasite Trypanosoma brucei, novel regulatory mechanisms seem to have evolved. Here, we analyse the function of the histone methyl-transferase DOT1A during cell-cycle progression. Over-expression of DOT1A generates a population of cells with aneuploid nuclei as well as enucleated cells. Detailed analysis shows that DOT1A over-expression causes continuous replication of the nuclear DNA. In contrast, depletion of DOT1A by RNAi abolishes replication but does not prevent karyokinesis. As histone H3K76 methylation has never been associated wi...
Post-translational histone modifications have been studied intensively in several eukaryotes. It has...
Reversible protein acetylation is established as a modification of major regulatory significance. In...
Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is...
Cell-cycle progression requires careful regulation to ensure accurate propagation of genetic materia...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
Post-translational histone modifications (PTMs) such as methylation of lysine residues influence chr...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
Trypanosomes are unicellular protozoan parasites responsible for several human diseases that affect ...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
International audiencePost-translational histone modifications modulate chromatin-templated processe...
DNA damage and repair in trypanosomatids impacts virulence, drug resistance and antigenic variation ...
The parasite Trypanosoma brucei periodically changes the expression of protective variant surface gl...
Post-translational histone modifications have been studied intensively in several eukaryotes. It has...
Reversible protein acetylation is established as a modification of major regulatory significance. In...
Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is...
Cell-cycle progression requires careful regulation to ensure accurate propagation of genetic materia...
The conserved histone methyltransferase Dot1 establishes an H3K79 methylation pattern consisting of ...
Post-translational histone modifications (PTMs) such as methylation of lysine residues influence chr...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
Trypanosomes are unicellular protozoan parasites responsible for several human diseases that affect ...
To evade the host immune system, several pathogens periodically change their cell-surface epitopes. ...
International audiencePost-translational histone modifications modulate chromatin-templated processe...
DNA damage and repair in trypanosomatids impacts virulence, drug resistance and antigenic variation ...
The parasite Trypanosoma brucei periodically changes the expression of protective variant surface gl...
Post-translational histone modifications have been studied intensively in several eukaryotes. It has...
Reversible protein acetylation is established as a modification of major regulatory significance. In...
Epigenetic mechanisms and chromatin structure play an important role in development. Their impact is...