Abstract: Over the past decade a large number of studies have focused attention on the role of nucleosomes as negative and positive regulators of specific nuclear functions. Due to the lack of an analytical method to determine the higher order conformation of the nucleosomal arrays that encompass specific genetic loci (e.g., promoters, enhancers), research emphasis has mostly been centered on chromatin remodeling and histone posttranslational modifications. We have recently developed an agarose gel electrophoresis method that permits us to analyze the higher order structure of specific in vivo assembled chromatin fragments. After calibration using a well-defined in vitro system, we have been able to experimentally determine the size, shape, and ...
Motivation: Nucleosome organization of DNA plays the key role in transcription initiation. Exhaustiv...
Processed data from the manuscript "Single-fiber nucleosome density shapes the regulatory output of ...
Summary: Transcription factor (TF) binding to DNA is crucial for transcriptional regulation. There a...
Abstract: Over the past decade a large number of studies have focused attention on the role of nucle...
Agarose multigel electrophoresis has been used to characterize the structural features of isolated g...
All eukaryotic organisms have elaborated ways of packaging DNA into chromosomes. Genetic processes, ...
Chromatin is a complex of DNA and histone proteins that constitutes the elemental material of eukar...
Eukaryotic DNA is packaged into chromatin which contains periodic arrays of nucleosomes. The nucleos...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
Gene activity is regulated at two separate layers. Through structural and chemical properties of DNA...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
Eukaryotic nuclei are packaged into a higher-order, tightly regulated structure called chromatin. Th...
<p>Chromatin structure plays an important role in gene regulation, especially in differentiating the...
Some of the recent experimental data obtained in our laboratory are briefly reviewed. 1. A mild stap...
Motivation: Nucleosome organization of DNA plays the key role in transcription initiation. Exhaustiv...
Processed data from the manuscript "Single-fiber nucleosome density shapes the regulatory output of ...
Summary: Transcription factor (TF) binding to DNA is crucial for transcriptional regulation. There a...
Abstract: Over the past decade a large number of studies have focused attention on the role of nucle...
Agarose multigel electrophoresis has been used to characterize the structural features of isolated g...
All eukaryotic organisms have elaborated ways of packaging DNA into chromosomes. Genetic processes, ...
Chromatin is a complex of DNA and histone proteins that constitutes the elemental material of eukar...
Eukaryotic DNA is packaged into chromatin which contains periodic arrays of nucleosomes. The nucleos...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
Gene activity is regulated at two separate layers. Through structural and chemical properties of DNA...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
Eukaryotic nuclei are packaged into a higher-order, tightly regulated structure called chromatin. Th...
<p>Chromatin structure plays an important role in gene regulation, especially in differentiating the...
Some of the recent experimental data obtained in our laboratory are briefly reviewed. 1. A mild stap...
Motivation: Nucleosome organization of DNA plays the key role in transcription initiation. Exhaustiv...
Processed data from the manuscript "Single-fiber nucleosome density shapes the regulatory output of ...
Summary: Transcription factor (TF) binding to DNA is crucial for transcriptional regulation. There a...