AbstractIdentifying gene regulatory elements and their target genes in human cells remains a significant challenge. Despite increasing evidence of physical interactions between distant regulatory elements and gene promoters in mammalian cells, many studies consider only promoter-proximal regulatory regions. We identify putative cis-regulatory modules (CRMs) in human skeletal muscle differentiation by combining myogenic TF binding data before and after differentiation with histone modification data in myoblasts. CRMs that are distant (>20kb) from muscle gene promoters are common and are more likely than proximal promoter regions to show differentiation-specific changes in myogenic TF binding. We find that two of these distant CRMs, known to ...
During skeletal muscle differentiation, the activa-tion of some tissue-specific genes occurs immedi-...
During skeletal muscle differentiation, the activation of some tissue-specific genes occurs immediat...
Myogenesis is highly regulated and its activation in the embryo is controlled by a series of complex...
Identifying gene regulatory elements and their target genes in human cells remains a significant cha...
AbstractIdentifying gene regulatory elements and their target genes in human cells remains a signifi...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Cis,regulatory modules (CRMs) are the functional DNA elements that encode the spatial and temporal ...
<div><p>Post-translational modifications of histones play a key role in the regulation of gene expre...
Post-translational modifications of histones play a key role in the regulation of gene expression du...
During skeletal myogenesis, chromatin-modifying enzymes are engaged at discrete genomic regions by t...
MYOD-directed fibroblast trans-differentiation into skeletal muscle provides a unique model to inves...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
MYOD-directed fibroblast trans-differentiation into skeletal muscle provides a unique model to inves...
During skeletal muscle differentiation, the activa-tion of some tissue-specific genes occurs immedi-...
During skeletal muscle differentiation, the activation of some tissue-specific genes occurs immediat...
Myogenesis is highly regulated and its activation in the embryo is controlled by a series of complex...
Identifying gene regulatory elements and their target genes in human cells remains a significant cha...
AbstractIdentifying gene regulatory elements and their target genes in human cells remains a signifi...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Cis,regulatory modules (CRMs) are the functional DNA elements that encode the spatial and temporal ...
<div><p>Post-translational modifications of histones play a key role in the regulation of gene expre...
Post-translational modifications of histones play a key role in the regulation of gene expression du...
During skeletal myogenesis, chromatin-modifying enzymes are engaged at discrete genomic regions by t...
MYOD-directed fibroblast trans-differentiation into skeletal muscle provides a unique model to inves...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
MYOD-directed fibroblast trans-differentiation into skeletal muscle provides a unique model to inves...
During skeletal muscle differentiation, the activa-tion of some tissue-specific genes occurs immedi-...
During skeletal muscle differentiation, the activation of some tissue-specific genes occurs immediat...
Myogenesis is highly regulated and its activation in the embryo is controlled by a series of complex...