The heteropentameric condensin complexes play vital roles in the formation and faithful segregation of mitotic chromosomes in eukaryotes. While the different contributions of the two common condensin complexes, condensin I and condensin II, to chromosome morphology and behavior in mitosis have been thoroughly investigated, much less is known about the specific roles of the two complexes during meiotic divisions. In Drosophila melanogaster, faithful mitotic divisions depend on functional condensin I, but not on condensin II. However, meiotic divisions in Drosophila males require functional condensin II subunits. The role of condensin I during male meiosis in Drosophila has been unresolved. Here, we show that condensin I-specific subunits loc...
SummaryBackgroundCondensin complexes organize chromosome structure and facilitate chromosome segrega...
Chromosome shaping and individualization are necessary requisites to warrant the correct segregation...
<div><p>Condensin complexes are key determinants of higher-order chromatin structure and are require...
Maintenance of an intact genome and proper regulation of the genes within are crucial aspects for li...
The cell's nucleus contains DNA in the form of chromosomes, which are the hereditary content of the ...
The heteropentameric condensin complexes have been shown to participate in mitotic chromosome conden...
<div><p>The heteropentameric condensin complexes have been shown to participate in mitotic chromosom...
Condensins I and II are key regulators of chromosome structure and segregation during meiosis and mi...
Condensins are some of the most ancient and well conserved protein complexes. Although much work has...
AbstractThe canonical condensin complex (henceforth condensin I) plays an essential role in mitotic ...
The canonical condensin complex (henceforth condensin I) plays an essential role in mitotic chromoso...
<div><p>The eukaryotic nucleus is both spatially and functionally partitioned. This organization con...
The eukaryotic nucleus is both spatially and functionally partitioned. This organization contributes...
The production of haploid gametes from diploid germ cells requires two rounds of meiotic chromosome ...
Condensin complexes are key determinants of higher-order chromatin structure and are required for mi...
SummaryBackgroundCondensin complexes organize chromosome structure and facilitate chromosome segrega...
Chromosome shaping and individualization are necessary requisites to warrant the correct segregation...
<div><p>Condensin complexes are key determinants of higher-order chromatin structure and are require...
Maintenance of an intact genome and proper regulation of the genes within are crucial aspects for li...
The cell's nucleus contains DNA in the form of chromosomes, which are the hereditary content of the ...
The heteropentameric condensin complexes have been shown to participate in mitotic chromosome conden...
<div><p>The heteropentameric condensin complexes have been shown to participate in mitotic chromosom...
Condensins I and II are key regulators of chromosome structure and segregation during meiosis and mi...
Condensins are some of the most ancient and well conserved protein complexes. Although much work has...
AbstractThe canonical condensin complex (henceforth condensin I) plays an essential role in mitotic ...
The canonical condensin complex (henceforth condensin I) plays an essential role in mitotic chromoso...
<div><p>The eukaryotic nucleus is both spatially and functionally partitioned. This organization con...
The eukaryotic nucleus is both spatially and functionally partitioned. This organization contributes...
The production of haploid gametes from diploid germ cells requires two rounds of meiotic chromosome ...
Condensin complexes are key determinants of higher-order chromatin structure and are required for mi...
SummaryBackgroundCondensin complexes organize chromosome structure and facilitate chromosome segrega...
Chromosome shaping and individualization are necessary requisites to warrant the correct segregation...
<div><p>Condensin complexes are key determinants of higher-order chromatin structure and are require...