How various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repressed genes is poorly understood. Nuclear transfer to Xenopus oocytes induces the transcriptional reactivation of previously silenced genes. Recent work suggests that it can be used to analyze the epigenetic stability of repressed states. The notion that the epigenetic state of genes is an important determinant of the efficiency of nuclear reprogramming is supported by the differential reprogramming of given genes from different starting epigenetic configurations. After nuclear transfer, transcription from the inactive X chromosome of post-implantation-derived epiblast stem cells is reactivated. However, the same chromosome is resistant to reac...
Different cell types have characteristic patterns of gene expression. Once a cell has differentiated...
Thesis (Ph.D.)--University of Washington, 2021The nucleus and its contents are not just static entit...
Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not ...
How various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repres...
How various layers of epigenetic repression restrict somatic cell nuclear reprogramming is poorly un...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
How cell fate becomes restricted during somatic cell differentiation is a long-lasting question in b...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
The transplantation of somatic cell nuclei to enucleated eggs has shown that genes can be reprogramm...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Genes on the inactive X chromosome (Xi) of female mam-mals are repressed in a remarkably stable mann...
A central question of biology is the basis of stable cell fates. Cell fates are formed during develo...
<div><p>Dynamic exchange of a subset of nucleosomes <i>in vivo</i> plays important roles in epigenet...
The importance of epigenetic mechanisms is most clearly illustrated during early development when a ...
International audienceX-chromosome inactivation is established during early development. In mice, tr...
Different cell types have characteristic patterns of gene expression. Once a cell has differentiated...
Thesis (Ph.D.)--University of Washington, 2021The nucleus and its contents are not just static entit...
Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not ...
How various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repres...
How various layers of epigenetic repression restrict somatic cell nuclear reprogramming is poorly un...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
How cell fate becomes restricted during somatic cell differentiation is a long-lasting question in b...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
The transplantation of somatic cell nuclei to enucleated eggs has shown that genes can be reprogramm...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Genes on the inactive X chromosome (Xi) of female mam-mals are repressed in a remarkably stable mann...
A central question of biology is the basis of stable cell fates. Cell fates are formed during develo...
<div><p>Dynamic exchange of a subset of nucleosomes <i>in vivo</i> plays important roles in epigenet...
The importance of epigenetic mechanisms is most clearly illustrated during early development when a ...
International audienceX-chromosome inactivation is established during early development. In mice, tr...
Different cell types have characteristic patterns of gene expression. Once a cell has differentiated...
Thesis (Ph.D.)--University of Washington, 2021The nucleus and its contents are not just static entit...
Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not ...