Hox genes are essential regulators of embryonic development. Their step-wise transcriptional activation follows their genomic topology and the various states of activation are subsequently memorized into domains of progressively overlapping gene products. We have analyzed the 3D chromatin organization of Hox clusters during their early activation in vivo, using high-resolution circular chromosome conformation capture. Initially, Hox clusters are organized as single chromatin compartments containing all genes and bivalent chromatin marks. Transcriptional activation is associated with a dynamic bi-modal 3D organization, whereby the genes switch autonomously from an inactive to an active compartment. These local 3D dynamics occur within a fram...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
Three-dimensional genome organization is an important higher order transcription regulation mech-ani...
The spatial and temporal control of Hox gene transcription is essential for patterning the vertebrat...
Hox genes are organized as clusters and specify regional identity along the anteroposterior body axi...
Temporal and spatial control of Hox gene expression is essential for correct patterning of many anim...
Spatial chromatin organization is emerging as an im-portant mechanism to regulate the expression of ...
Spatial chromatin organization is emerging as an im-portant mechanism to regulate the expression of ...
AbstractModulation of chromatin structure has long been proposed to underlie the colinear regulation...
The Hox genes, which are organized into clusters on different chromosomes, are key regulators of emb...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
Hox genes encode a family of transcription factors that play highly conserved regulatory roles in sp...
The regulation of gene expression is central to developmental programs and largely depends on the bi...
Background The spatial organization of the mammalian genome relies upon the formation of chromatin d...
SummaryNoncoding RNAs (ncRNA) participate in epigenetic regulation but are poorly understood. Here w...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
Three-dimensional genome organization is an important higher order transcription regulation mech-ani...
The spatial and temporal control of Hox gene transcription is essential for patterning the vertebrat...
Hox genes are organized as clusters and specify regional identity along the anteroposterior body axi...
Temporal and spatial control of Hox gene expression is essential for correct patterning of many anim...
Spatial chromatin organization is emerging as an im-portant mechanism to regulate the expression of ...
Spatial chromatin organization is emerging as an im-portant mechanism to regulate the expression of ...
AbstractModulation of chromatin structure has long been proposed to underlie the colinear regulation...
The Hox genes, which are organized into clusters on different chromosomes, are key regulators of emb...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
Hox genes encode a family of transcription factors that play highly conserved regulatory roles in sp...
The regulation of gene expression is central to developmental programs and largely depends on the bi...
Background The spatial organization of the mammalian genome relies upon the formation of chromatin d...
SummaryNoncoding RNAs (ncRNA) participate in epigenetic regulation but are poorly understood. Here w...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
The developing embryo is a paradigmatic model to study molecular mechanisms of time control in Biolo...
Three-dimensional genome organization is an important higher order transcription regulation mech-ani...