Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but its mechanisms remain unclear. Here, we identify a sequence of molecular events that leads to rapid transcriptional reprogramming of somatic nuclei after transplantation to Xenopus oocytes. RNA-seq analyses reveal that reprogramming by oocytes results in a selective switch in transcription toward an oocyte rather than pluripotent type, without requiring new protein synthesis. Time-course analyses at the single-nucleus level show that transcriptional reprogramming is induced in most transplanted nuclei in a highly hierarchical manner. We demonstrate that an extensive exchange of somatic- for oocyte-specific factors mediates reprogramming and le...
While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated ooc...
AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm...
Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, ce...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not ...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
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 ...
Amphibian oocytes can rapidly and efficiently reprogram the transcription of transplanted somatic nu...
Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transfer, cell...
<div><p>Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transf...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
Many of the structural and mechanistic requirements of oocyte-mediated nuclear reprogramming remain ...
SummaryNuclear transfer to eggs or oocytes provides a potential route for cell-replacement therapies...
While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated ooc...
AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm...
Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, ce...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Summary: Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, i...
Oocytes have a remarkable ability to reactivate silenced genes in somatic cells. However, it is not ...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
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 ...
Amphibian oocytes can rapidly and efficiently reprogram the transcription of transplanted somatic nu...
Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transfer, cell...
<div><p>Cell differentiation is remarkably stable but can be reversed by somatic cell nuclear transf...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
Many of the structural and mechanistic requirements of oocyte-mediated nuclear reprogramming remain ...
SummaryNuclear transfer to eggs or oocytes provides a potential route for cell-replacement therapies...
While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated ooc...
AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm...
Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, ce...