Abstract Background Recent advances in sequencing technologies have enabled parallel assays of chromatin accessibility and gene expression for major human cell lines. Such innovation provides a great opportunity to decode phenotypic consequences of genetic variation via the construction of predictive gene regulatory network models. However, there still lacks a computational method to systematically integrate chromatin accessibility information with gene expression data to recover complicated regulatory relationships between genes in a tissue-specific manner. Results We propose a Markov random field (MRF) model for constructing tissue-specific transcriptional regulatory networks via integrative analysis of DNase-seq and RNA-seq data. Our met...
Regulation of gene expression spans different levels of complexity: from genomic sequence, transcrip...
International audienceTranscriptional Regulatory Networks (TRNs) are mainly responsible for the cell...
The transcription regulatory network is arguably the most important foundation of cellular function,...
The main goal of Systems Biology research is to reconstruct biological networks for its topological ...
Many human diseases including cancer are the result of perturbations to transcriptional regulatory n...
There is great interest in understanding the genetic program of cellular response and differentiatio...
Abstract Background High throughput gene expression experiments yield large amounts of data that can...
Abstract : The human body is composed of a huge number of cells acting together in a concerted manne...
Computational network biology aims to understand cell behavior through complex network analysis. The...
Transcription factors (TFs) play an important role in gene regulation. The interconnections among TF...
Precise regulation of the cell cycle is crucial to the growth and development of all organisms. Unde...
High-throughput technologies such as chromatin immunoprecipitation (IP) followed by next generation ...
Identification of coding and non-coding cancer drivers using gene regulatory network analysis Regula...
Gene regulatory networks determine cellular identity. In cancer, aberrations of gene networks are ca...
Gene expression is a tightly controlled process in all cells and at all stages of life. Expressing ...
Regulation of gene expression spans different levels of complexity: from genomic sequence, transcrip...
International audienceTranscriptional Regulatory Networks (TRNs) are mainly responsible for the cell...
The transcription regulatory network is arguably the most important foundation of cellular function,...
The main goal of Systems Biology research is to reconstruct biological networks for its topological ...
Many human diseases including cancer are the result of perturbations to transcriptional regulatory n...
There is great interest in understanding the genetic program of cellular response and differentiatio...
Abstract Background High throughput gene expression experiments yield large amounts of data that can...
Abstract : The human body is composed of a huge number of cells acting together in a concerted manne...
Computational network biology aims to understand cell behavior through complex network analysis. The...
Transcription factors (TFs) play an important role in gene regulation. The interconnections among TF...
Precise regulation of the cell cycle is crucial to the growth and development of all organisms. Unde...
High-throughput technologies such as chromatin immunoprecipitation (IP) followed by next generation ...
Identification of coding and non-coding cancer drivers using gene regulatory network analysis Regula...
Gene regulatory networks determine cellular identity. In cancer, aberrations of gene networks are ca...
Gene expression is a tightly controlled process in all cells and at all stages of life. Expressing ...
Regulation of gene expression spans different levels of complexity: from genomic sequence, transcrip...
International audienceTranscriptional Regulatory Networks (TRNs) are mainly responsible for the cell...
The transcription regulatory network is arguably the most important foundation of cellular function,...