We propose a new computational method for exploring chromatin structural organization based on Markov State Modelling of Hi-C data represented as an interaction network between genomic loci. A Markov process describes the random walk of a traveling probe in the corresponding energy landscape, mimicking the motion of a biomolecule involved in chromatin function. By studying the metastability of the associated Markov State Model upon annealing, the hierarchical structure of individual chromosomes is observed, and corresponding set of structural partitions is identified at each level of hierarchy. Then, the notion of effective interaction between partitions is derived, delineating the overall topology and architecture of chromosomes. Mapping e...
With the rapid development of modern computational techniques, more complex systems have been found ...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
We propose a new computational method for exploring chromatin structural organization based on Marko...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
We introduce a computational model to simulate chromatin structure and dynamics. Starting from one-d...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
We review the picture of chromatin large-scale 3D organization emerging from the analysis of Hi-C da...
In vivo, the human genome folds into a characteristic ensemble of 3D structures. The mechanism drivi...
In eukaryotic cells, the long linear sequence of DNA is packed tightly inside the nucleus in a non-r...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin-state analysis is widely applied in the studies of development and diseases. However, exis...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin is the complex of genomic DNA and proteins that fills the nucleus of eukaryotic cells. The...
International audienceThe spatial organization of the genome plays a crucial role in the regulation ...
With the rapid development of modern computational techniques, more complex systems have been found ...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
We propose a new computational method for exploring chromatin structural organization based on Marko...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
We introduce a computational model to simulate chromatin structure and dynamics. Starting from one-d...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
We review the picture of chromatin large-scale 3D organization emerging from the analysis of Hi-C da...
In vivo, the human genome folds into a characteristic ensemble of 3D structures. The mechanism drivi...
In eukaryotic cells, the long linear sequence of DNA is packed tightly inside the nucleus in a non-r...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin-state analysis is widely applied in the studies of development and diseases. However, exis...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin is the complex of genomic DNA and proteins that fills the nucleus of eukaryotic cells. The...
International audienceThe spatial organization of the genome plays a crucial role in the regulation ...
With the rapid development of modern computational techniques, more complex systems have been found ...
We investigate spatiotemporal dynamics of human interphase chromosomes by employing a heteropolymer ...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...