How eukaryotic chromosomes are compacted during mitosis has been a leading question in cell biology since the nineteenth century. Non-histone proteins such as condensin complexes contribute to chromosome shaping, but appear not to be necessary for mitotic chromatin compaction. Histone modifications are known to affect chromatin structure. As histones undergo major changes in their post24 translational modifications during mitotic onset, we speculated that the spectrum of cell cycle-specific histone modifications might contribute to chromosome compaction during mitosis. To test this hypothesis, we isolated core histones from interphase and mitotic cells and reconstituted chromatin with them. We used mass spectrometry to show...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
How eukaryotic chromosomes are compacted during mitosis has been a leading question in cell biology ...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
Posttranslational modifications of core histones contribute to driving changes in chromatin conforma...
Posttranslational modifications of core histones contribute to driving changes in chromatin conforma...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
Metaphase chromosomes are visible hallmarks of mitosis, yet our understanding of their structure and...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
Mitotic chromosomes are the iconic structures into which the genome is packaged to ensure its accura...
Mitotic chromosomes are scaled to the cell size to ensure effective chromosome segregation. Recent s...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
How eukaryotic chromosomes are compacted during mitosis has been a leading question in cell biology ...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
Posttranslational modifications of core histones contribute to driving changes in chromatin conforma...
Posttranslational modifications of core histones contribute to driving changes in chromatin conforma...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
During eukaryotic cell division, nuclear chromatin undergoes marked changes with respect to shape an...
Metaphase chromosomes are visible hallmarks of mitosis, yet our understanding of their structure and...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
Mitotic chromosomes are the iconic structures into which the genome is packaged to ensure its accura...
Mitotic chromosomes are scaled to the cell size to ensure effective chromosome segregation. Recent s...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
The decompaction and re-establishment of chromatin organization immediately after mitosis is essenti...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...
The rearrangement of interphase chromatin into mitotic chromosomes is crucial for faithful chromoso...