Inactivation of one X chromosome is established early in female mammalian development and can be reversed in vivo and in vitro when pluripotency factors are re-expressed. The extent of reactivation along the inactive X chromosome (Xi) and the determinants of locus susceptibility are, however, poorly understood. Here we use cell fusion-mediated pluripotent reprograming to study human Xi reactivation and allele-specific single nucleotide polymorphisms (SNPs) to identify reactivated loci. Results: We show that a subset of human Xi genes is rapidly reactivated upon re-expression of the pluripotency network. These genes lie within the most evolutionary recent segments of the human X chromosome that are depleted of LINE1 and enriched for SINE ele...
In placental mammals, balanced expression of X-linked genes is accomplished by X chromosome inactiva...
Dramatic epigenetic changes take place during mammalian differentiation from the naive pluripotent s...
Reprogramming to iPSCs resets the epigenome of somatic cells, including the reversal of X chromosome...
Background Inactivation of one X chromosome is established early in female mammalian development and...
Inactivation of one X chromosome is established early in female mammalian development and can be rev...
Abstract Background Inactivati...
Inactivation of one X chromosome is established early in female mammalian development and can be rev...
X chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
Erasure of epigenetic memory is required to convert somatic cells towards pluripotency. Reactivation...
Erasure of epigenetic memory is required to convert somatic cells towards pluripotency. Reactivation...
textabstractIn placental mammals, balanced expression of X-linked genes is accomplished by X chromos...
In placental mammals, balanced expression of X-linked genes is accomplished by X chromosome inactiva...
In placental mammals, balanced expression of X-linked genes is accomplished by X chromosome inactiva...
Dramatic epigenetic changes take place during mammalian differentiation from the naive pluripotent s...
Reprogramming to iPSCs resets the epigenome of somatic cells, including the reversal of X chromosome...
Background Inactivation of one X chromosome is established early in female mammalian development and...
Inactivation of one X chromosome is established early in female mammalian development and can be rev...
Abstract Background Inactivati...
Inactivation of one X chromosome is established early in female mammalian development and can be rev...
X chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
X-chromosome inactivation (XCI) is an exemplar of epigenetic regulation that is set up as pluripoten...
Erasure of epigenetic memory is required to convert somatic cells towards pluripotency. Reactivation...
Erasure of epigenetic memory is required to convert somatic cells towards pluripotency. Reactivation...
textabstractIn placental mammals, balanced expression of X-linked genes is accomplished by X chromos...
In placental mammals, balanced expression of X-linked genes is accomplished by X chromosome inactiva...
In placental mammals, balanced expression of X-linked genes is accomplished by X chromosome inactiva...
Dramatic epigenetic changes take place during mammalian differentiation from the naive pluripotent s...
Reprogramming to iPSCs resets the epigenome of somatic cells, including the reversal of X chromosome...