Background: In investigations of nucleosome positioning preferences, a model that assigns an affinity to a given sequence is necessary to make predictions. One important class of models, which treats a nucleosome sequence as a Markov chain, has been applied with success when informed with experimentally measured nucleosomal sequence preferences. Results: We find that we can also use such models as a fast approximative scheme for computationally expensive biophysical models, vastly increasing their reach. Employing these models in this way also allows us to benchmark them for the first time. Doing so for the approximative in silico models indirectly tells us about the accuracy we can expect of them when applied to real data. Conclusion: We f...
Eukaryotic cells contain long DNA molecules (about two meters for a human cell) which are tightly pa...
We introduce and study a set of training-free methods of an information-theoretic and algorithmic co...
ABSTRACT Imaging of nucleosomal arrays by atomic force microscopy allows a determination of the exac...
Background. The currently used kth Markov models estimate the probability of generating a single nuc...
Nucleosomes are the fundamental repeating unit of chromatin and constitute the structural building b...
Nucleosomes are the basic elements of DNA chromatin structure. Not only they control DNA packaging b...
Nucleosomes are the basic elements of DNA chromatin structure. Not only they control DNA packaging b...
Abstract Eukaryotic DNA is packaged into chromatin: one-dimensional arrays of nucleosomes sepa-rated...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
The first level of folding of DNA in eukaryotes is provided by the so-called "10-nm chromatin fibre"...
Abstract Background The nucleosome is the fundamental packing unit of DNAs in eukaryotic cells. Its ...
The position of the non-functional binding site is indicated by the red line at sequence position 30...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
We introduce and study a set of training-free methods of an information-theoretic and algorithmic co...
Eukaryotic cells contain long DNA molecules (about two meters for a human cell) which are tightly pa...
We introduce and study a set of training-free methods of an information-theoretic and algorithmic co...
ABSTRACT Imaging of nucleosomal arrays by atomic force microscopy allows a determination of the exac...
Background. The currently used kth Markov models estimate the probability of generating a single nuc...
Nucleosomes are the fundamental repeating unit of chromatin and constitute the structural building b...
Nucleosomes are the basic elements of DNA chromatin structure. Not only they control DNA packaging b...
Nucleosomes are the basic elements of DNA chromatin structure. Not only they control DNA packaging b...
Abstract Eukaryotic DNA is packaged into chromatin: one-dimensional arrays of nucleosomes sepa-rated...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
The first level of folding of DNA in eukaryotes is provided by the so-called "10-nm chromatin fibre"...
Abstract Background The nucleosome is the fundamental packing unit of DNAs in eukaryotic cells. Its ...
The position of the non-functional binding site is indicated by the red line at sequence position 30...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
We introduce and study a set of training-free methods of an information-theoretic and algorithmic co...
Eukaryotic cells contain long DNA molecules (about two meters for a human cell) which are tightly pa...
We introduce and study a set of training-free methods of an information-theoretic and algorithmic co...
ABSTRACT Imaging of nucleosomal arrays by atomic force microscopy allows a determination of the exac...