SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spatially organized, with chromosomes and individual loci occupying dynamic, but nonrandom, spatial positions relative to nuclear landmarks and to each other. These positional preferences correlate with gene expression and DNA repair, recombination, and replication. Yet the principles that govern nuclear organization remain poorly understood and detailed predictive models are lacking.ResultsWe present a computational model of dynamic chromosome configurations in the interphase yeast nucleus that is based on first principles and is able to statistically predict the positioning of any locus in nuclear space. Despite its simplicity, the model agrees ...
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
The architecture of the eukaryotic genome is characterized by a high degree of spatial organization....
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spati...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBiological functions including gene expression and dna repair are affected by ...
AbstractEukaryotic genome is organized in a set of chromosomes each of which consists of a chain of ...
International audienceThe spatial organization of genes and chromosomes plays an important role in t...
Nuclear organization can impact on all aspects of the genome life cycle. This organization is thorou...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
The architecture of the eukaryotic genome is characterized by a high degree of spatial organization....
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
SummaryBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic cells is spati...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBackgroundDespite the absence of internal membranes, the nucleus of eukaryotic...
International audienceBiological functions including gene expression and dna repair are affected by ...
AbstractEukaryotic genome is organized in a set of chromosomes each of which consists of a chain of ...
International audienceThe spatial organization of genes and chromosomes plays an important role in t...
Nuclear organization can impact on all aspects of the genome life cycle. This organization is thorou...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Using numerical simulations, we investigate the underlying physical effects responsible for the over...
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...
The architecture of the eukaryotic genome is characterized by a high degree of spatial organization....
Chromatin is not randomly organized inside the eukaryotic nucleus in interphase. In budding yeast g...