Chromatin structure, including nucleosome positioning, has a fundamental role in transcriptional regulation through influencing protein-DNA interactions. DNA topology is known to influence chromatin structure, and in doing so, can also alter transcription. However, detailed mechanism(s) linking transcriptional regulation events to chromatin structure that is regulated by changes in DNA topology remain to be well defined. Here we demonstrate that nucleosome positioning and transcriptional output from the fission yeast fbp1 and prp3 genes are altered by excess topoisomerase activity. Given that lncRNAs (long noncoding RNAs) are transcribed from the fbp1 upstream region and are important for fbp1 gene expression, we hypothesized that local cha...
Transcription is regulated on different levels to ensure that genes are expressed at the correct tim...
Chromatin remodeling is essential to allow full development of alternative gene expression programs ...
The rDNA cluster is the genetic locus encoding the ribosomal RNAs and physically defines where ribos...
Chromatin structure, including nucleosome positioning, has a fundamental role in transcriptional reg...
DNA topoisomerases regulate the topological state of the DNA double helix and are key enzymes in the...
To investigate the role of DNA topoisomerases in transcription, we have studied global gene expressi...
Cellular DNA topoisomerases (topo I and topo II) are highly conserved enzymes that regulate the topo...
<div><p>To investigate the role of DNA topoisomerases in transcription, we have studied global gene ...
Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and ...
Nucleosome positioning is crucial for the genome's function. Though the role of DNA sequence in posi...
DNA topoisomerases Top1 and Top2 have redundant functions in resolving topological alterations arisi...
<div><p>Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within ge...
Eukaryotic topoisomerase II (topo II) is the essential decatenase of newly replicated chromosomes an...
Cellular DNA topoisomerases (topo I and topo II) are highly conserved enzymes that regulate the top...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Transcription is regulated on different levels to ensure that genes are expressed at the correct tim...
Chromatin remodeling is essential to allow full development of alternative gene expression programs ...
The rDNA cluster is the genetic locus encoding the ribosomal RNAs and physically defines where ribos...
Chromatin structure, including nucleosome positioning, has a fundamental role in transcriptional reg...
DNA topoisomerases regulate the topological state of the DNA double helix and are key enzymes in the...
To investigate the role of DNA topoisomerases in transcription, we have studied global gene expressi...
Cellular DNA topoisomerases (topo I and topo II) are highly conserved enzymes that regulate the topo...
<div><p>To investigate the role of DNA topoisomerases in transcription, we have studied global gene ...
Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and ...
Nucleosome positioning is crucial for the genome's function. Though the role of DNA sequence in posi...
DNA topoisomerases Top1 and Top2 have redundant functions in resolving topological alterations arisi...
<div><p>Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within ge...
Eukaryotic topoisomerase II (topo II) is the essential decatenase of newly replicated chromosomes an...
Cellular DNA topoisomerases (topo I and topo II) are highly conserved enzymes that regulate the top...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Transcription is regulated on different levels to ensure that genes are expressed at the correct tim...
Chromatin remodeling is essential to allow full development of alternative gene expression programs ...
The rDNA cluster is the genetic locus encoding the ribosomal RNAs and physically defines where ribos...