In eukaryotes the genome adopts a non-random spatial organisation, which is important for gene regulation. However, very little is known about the driving forces behind nuclear organisation. In the simple model eukaryote fission yeast, Schizosaccharomyces pombe, it has been known for a long time that transcriptionally repressed heterochromatin localise to the nuclear membrane (NM); the centromeres attaches to spindle pole body (SPB), while the telomeres are positioned at the NM on the opposite side of the nucleus compared to the SPB. Studies presented in this thesis aimed at advancing our knowledge of nuclear organisation in Schizosaccharomyces pombe. We show that the heterochromatic mating-type region localises to the NM in the vicinity of...
In eukaryotes, the segregation of chromosomes is co-ordinated by the centromere and must proceed acc...
Telomeres play important roles in safeguarding the genome. The specialized repressive chromatin that...
Successful progression through the cell cycle requires spatial and temporal regulation of gene trans...
In eukaryotes the genome adopts a non-random spatial organisation, which is important for gene regul...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The genome has a non-random spatial distribution in the cell nucleus. In Schizosaccharomyces pombe, ...
In the eukaryotic cell nucleus, spatial organization and dynamics of the genome is important in the ...
The higher-order assembly of chromatin imposes structural organization on the genetic information of...
The three-dimensional spatial architecture of chromosomes is integrally connected to chromatin funct...
During the last few years, there has been a rapid increase in our knowledge of how chromatin is orga...
SummaryBackgroundCentromeres are cis-acting chromosomal domains that direct kinetochore formation, e...
SummaryBackgroundCentromeres are cis-acting chromosomal domains that direct kinetochore formation, e...
During the last few years, there has been a rapid increase in our knowledge of how chromatin is orga...
In eukaryotes, the segregation of chromosomes is co-ordinated by the centromere and must proceed acc...
Telomeres play important roles in safeguarding the genome. The specialized repressive chromatin that...
Successful progression through the cell cycle requires spatial and temporal regulation of gene trans...
In eukaryotes the genome adopts a non-random spatial organisation, which is important for gene regul...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The chromatin in the cell nucleus has a spatial organisation. For example, in the fission yeast, Sch...
The genome has a non-random spatial distribution in the cell nucleus. In Schizosaccharomyces pombe, ...
In the eukaryotic cell nucleus, spatial organization and dynamics of the genome is important in the ...
The higher-order assembly of chromatin imposes structural organization on the genetic information of...
The three-dimensional spatial architecture of chromosomes is integrally connected to chromatin funct...
During the last few years, there has been a rapid increase in our knowledge of how chromatin is orga...
SummaryBackgroundCentromeres are cis-acting chromosomal domains that direct kinetochore formation, e...
SummaryBackgroundCentromeres are cis-acting chromosomal domains that direct kinetochore formation, e...
During the last few years, there has been a rapid increase in our knowledge of how chromatin is orga...
In eukaryotes, the segregation of chromosomes is co-ordinated by the centromere and must proceed acc...
Telomeres play important roles in safeguarding the genome. The specialized repressive chromatin that...
Successful progression through the cell cycle requires spatial and temporal regulation of gene trans...