The precise expression of genes in time and space during embryogenesis is largely influenced by communication between enhancers and promoters, which is propagated and governed by the physical proximity of these elements in the nucleus. Here, we review how chromatin domains organize the genome by guiding enhancers to their target genes thereby preventing non-specific interactions with other neighboring regions. We also discuss the dynamics of chromatin interactions between enhancers and promoters, as well as the consequent changes in gene expression, that occur in pluripotent cells and during development. Finally, we evaluate how genomic changes such as deletions, inversions and duplications affect 3D chromatin configuration overall and lead...
Abstract Linear DNA undergoes a series of compression and folding events, forming various three‐dime...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
In multicellular organisms, transcription regulation is one of the central mechanisms modelling line...
During embryogenesis, precise gene transcription in space and time requires that distal enhancers an...
Higher-order chromatin structure is emerging as an important regulator of gene expression. Although ...
The different cell types of an organism share the same DNA, but during cell differentiation their ge...
The spatial organization of the genome is essential for the precise control of gene expression. Rece...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
The functional output of the genome is closely dependent on its organization within the nucleus, whi...
Mammalian gene expression patterns are controlled by regulatory elements, which interact within topo...
Mammalian gene expression patterns are controlled by regulatory elements, which interact within topo...
Animal development depends on not only the linear genome sequence that embeds millions of cis-regula...
Enhancers are cis-regulatory elements that regulate when and where genes are expressed. These functi...
Summary: During mammalian embryogenesis, changes in morphology and gene expression are concurrent wi...
Cancer development and progression are demarcated by transcriptional dysregulation, which is largely...
Abstract Linear DNA undergoes a series of compression and folding events, forming various three‐dime...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
In multicellular organisms, transcription regulation is one of the central mechanisms modelling line...
During embryogenesis, precise gene transcription in space and time requires that distal enhancers an...
Higher-order chromatin structure is emerging as an important regulator of gene expression. Although ...
The different cell types of an organism share the same DNA, but during cell differentiation their ge...
The spatial organization of the genome is essential for the precise control of gene expression. Rece...
It is now well established that genome organization plays a major role in its functioning. Enhancers...
The functional output of the genome is closely dependent on its organization within the nucleus, whi...
Mammalian gene expression patterns are controlled by regulatory elements, which interact within topo...
Mammalian gene expression patterns are controlled by regulatory elements, which interact within topo...
Animal development depends on not only the linear genome sequence that embeds millions of cis-regula...
Enhancers are cis-regulatory elements that regulate when and where genes are expressed. These functi...
Summary: During mammalian embryogenesis, changes in morphology and gene expression are concurrent wi...
Cancer development and progression are demarcated by transcriptional dysregulation, which is largely...
Abstract Linear DNA undergoes a series of compression and folding events, forming various three‐dime...
The nuclear organization of chromosomes has been suggested to be associated with regulation of gene ...
In multicellular organisms, transcription regulation is one of the central mechanisms modelling line...