Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not clear how the chromatin architecture of somatic cells affects this transcriptional reprogramming. Here, we investigated the relationship between the chromatin opening and transcriptional activation. We reveal changes in chromatin accessibility and their relevance to transcriptional reprogramming after transplantation of somatic nuclei into Xenopus oocytes. Genes that are silenced, but have pre-existing open transcription start sites in donor cells, are prone to be activated after nuclear transfer, suggesting that the chromatin signature of somatic nuclei influences transcriptional reprogramming. There are also activated genes associated with ...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
How various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repres...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
Somatic cell reprogramming into induced pluripotent stem cells (iPSCs) induces changes in genome arc...
<div><p>Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transf...
The transplantation of somatic cell nuclei to enucleated eggs has shown that genes can be reprogramm...
Full-grown Xenopus oocytes in first meiotic prophase contain an immensely enlarged nucleus, the Germ...
Oocytes are unique cells with the inherent capability to reprogram nuclei. The reprogramming of the ...
Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transfer, cell...
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 various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repres...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
Somatic cell reprogramming into induced pluripotent stem cells (iPSCs) induces changes in genome arc...
<div><p>Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transf...
The transplantation of somatic cell nuclei to enucleated eggs has shown that genes can be reprogramm...
Full-grown Xenopus oocytes in first meiotic prophase contain an immensely enlarged nucleus, the Germ...
Oocytes are unique cells with the inherent capability to reprogram nuclei. The reprogramming of the ...
Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transfer, cell...
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 various epigenetic mechanisms restrict chromatin plasticity to determine the stability of repres...
Understanding the mechanism of resistance of genes to reactivation will help improve the success of ...