AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm of oocytes. While the molecular basis of this nuclear reprogramming remains unknown, the developmental potential of nuclear-transfer embryos is influenced by the cell-cycle stage of both donor and recipient. As somatic H1 becomes immunologically undetectable on bovine embryonic nuclei following transfer into ooplasm and reappears during development of the reconstructed embryo, suggesting that it may act as a marker of nuclear reprogramming, we investigated the link between cell-cycle state and depletion of immunoreactive H1 following nuclear transplantation. Blastomere nuclei at M-, G1-, or G2-phase were introduced into ooplasts at metaphase...
We review experiments in which somatic cell nuclei are transplanted singly to enucleated eggs (metap...
Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only reprogrammin...
<div><p>Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only repr...
AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm...
AbstractThe most distinctive feature of oocyte-specific linker histones is the specific timing of th...
AbstractH1 linker histones (H1s) are key regulators of chromatin structure and function. The functio...
Enucleated oocytes have the distinctive ability to reprogram somatic nuclei back to totipotency. Her...
AbstractWe analyzed progression through the meiotic maturation in oocytes manipulated to replace the...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
SummaryMammalian oocytes can reprogram somatic cells into a totipotent state enabling animal cloning...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Somatic cell nuclear transfer, an important approach for the analysis of certain functional changes ...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
To date, there is a large body of information on the structural composition of oocytes and embryonic...
We review experiments in which somatic cell nuclei are transplanted singly to enucleated eggs (metap...
Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only reprogrammin...
<div><p>Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only repr...
AbstractNuclei of differentiated cells can acquire totipotency following transfer into the cytoplasm...
AbstractThe most distinctive feature of oocyte-specific linker histones is the specific timing of th...
AbstractH1 linker histones (H1s) are key regulators of chromatin structure and function. The functio...
Enucleated oocytes have the distinctive ability to reprogram somatic nuclei back to totipotency. Her...
AbstractWe analyzed progression through the meiotic maturation in oocytes manipulated to replace the...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
SummaryMammalian oocytes can reprogram somatic cells into a totipotent state enabling animal cloning...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
Somatic cell nuclear transfer, an important approach for the analysis of certain functional changes ...
Nuclear transfer to oocytes is an efficient way to transcriptionally reprogram somatic nuclei, but i...
SUMMARY Mammalian oocytes have the ability to reset the transcriptional program of differentiated so...
To date, there is a large body of information on the structural composition of oocytes and embryonic...
We review experiments in which somatic cell nuclei are transplanted singly to enucleated eggs (metap...
Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only reprogrammin...
<div><p>Establishment of totipotency after somatic cell nuclear transfer (NT) requires not only repr...