The hierarchical organization of chromatin is known to associate with diverse cellular functions; however, the precise mechanisms and the 3D structure remain to be determined. With recent advances in high-throughput next generation sequencing (NGS) techniques, genome-wide profiling of chromatin structures is made possible. Here, we provide a comprehensive overview of NGS-based methods for profiling “higher-order” and “primary-order” chromatin structures from both experimental and computational aspects. Experimental requirements and considerations specific for each method were highlighted. For computational analysis, we summarized a common analysis strategy for both levels of chromatin assessment, focusing on the characteristic computing ste...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Recently developed methods that couple next-generation sequencing with chromosome conformation captu...
The genomic organization of chromatin is increasingly recognized as a key regulator of cell behavior...
In all organisms, chromatin is packed to fulfil structural constraints and functional requirements. ...
Beyond linear sequence, higher order structure of the genome influences gene regulation and has been...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
Abstract It is well known that the chromosomes are organized in the nucleus and this spatial arrange...
Genome-wide 3C technologies (Hi-C) are being increasingly employed to study three-dimensional (3D) g...
How DNA is organized in three dimensions inside the cell nucleus and how this affects the ways in wh...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Recently developed methods that couple next-generation sequencing with chromosome conformation captu...
The genomic organization of chromatin is increasingly recognized as a key regulator of cell behavior...
In all organisms, chromatin is packed to fulfil structural constraints and functional requirements. ...
Beyond linear sequence, higher order structure of the genome influences gene regulation and has been...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
Chromosomes are giant chain molecules organized into an ensemble of three-dimensional structures cha...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
Abstract It is well known that the chromosomes are organized in the nucleus and this spatial arrange...
Genome-wide 3C technologies (Hi-C) are being increasingly employed to study three-dimensional (3D) g...
How DNA is organized in three dimensions inside the cell nucleus and how this affects the ways in wh...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Recently developed methods that couple next-generation sequencing with chromosome conformation captu...
The genomic organization of chromatin is increasingly recognized as a key regulator of cell behavior...