Abstract Background Extensive studies have shown that gene expression levels are strongly affected by chromatin mark combinations via at least two mechanisms, i.e., activation or repression. But their combinatorial patterns are still unclear. To further understand the relationship between histone modifications and gene expression levels, here in this paper, we introduce a purely geometric higher-order representation, tensor (also called multidimensional array), which might borrow more unknown interactions in chromatin states to predicting gene expression levels. Results The prediction models were learned from regions around upstream 10k base pairs and downstream 10k base pairs of the transcriptional start sites (TSSs) on three species (i.e....
The three dimensional conformation of the genome in the cell nucleus influences important biological...
A problem of substantial interest is to systematically map variation in chromatin structure to gene...
In silico prediction of transcription factor binding sites (TFBSs) is central to the task of gene re...
Abstract Background Extensive studies have shown that...
Combinatorial patterns of chromatin marks have been shown to play a significant role in gene regulat...
BACKGROUND: Previous work has demonstrated that chromatin feature levels correlate with gene express...
AbstractPrediction of gene expression levels from regulatory sequences is one of the major challenge...
Histones are frequently decorated with covalent modifications. These histone modifications are thoug...
Histones are frequently decorated with covalent modifications. These histone modifications are thoug...
Histone Mark Modifications (HMs) are crucial actors in gene regulation, as they actively remodel chr...
The relationship between gene co-expression and chromatin conformation is of great biological intere...
Gene expression regulation is a complex process involving the interplay between transcription factor...
Recent studies have identified thousands of regions in the genome associated with chromatin modifica...
Gene expression regulation is a complex process involving the interplay between transcription factor...
Motivation: The relationship between gene co-expression and chromatin conformation is of great biolo...
The three dimensional conformation of the genome in the cell nucleus influences important biological...
A problem of substantial interest is to systematically map variation in chromatin structure to gene...
In silico prediction of transcription factor binding sites (TFBSs) is central to the task of gene re...
Abstract Background Extensive studies have shown that...
Combinatorial patterns of chromatin marks have been shown to play a significant role in gene regulat...
BACKGROUND: Previous work has demonstrated that chromatin feature levels correlate with gene express...
AbstractPrediction of gene expression levels from regulatory sequences is one of the major challenge...
Histones are frequently decorated with covalent modifications. These histone modifications are thoug...
Histones are frequently decorated with covalent modifications. These histone modifications are thoug...
Histone Mark Modifications (HMs) are crucial actors in gene regulation, as they actively remodel chr...
The relationship between gene co-expression and chromatin conformation is of great biological intere...
Gene expression regulation is a complex process involving the interplay between transcription factor...
Recent studies have identified thousands of regions in the genome associated with chromatin modifica...
Gene expression regulation is a complex process involving the interplay between transcription factor...
Motivation: The relationship between gene co-expression and chromatin conformation is of great biolo...
The three dimensional conformation of the genome in the cell nucleus influences important biological...
A problem of substantial interest is to systematically map variation in chromatin structure to gene...
In silico prediction of transcription factor binding sites (TFBSs) is central to the task of gene re...