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Spatiotemporally distinct pluripotent states captured in vitro provide an accessible way of modelling early human development. An intricate interplay between the metabolome and histone modifications is now shown to drive the metabolic switch from human naive to primed pluripotency, one of the earliest steps of embryogenesis.
Carey,
Intracellular α-ketoglutarate maintains the pluripotency of embryonic stem cells.
2015, Pubmed
Carey,
Intracellular α-ketoglutarate maintains the pluripotency of embryonic stem cells.
2015,
Pubmed Chen,
Generation of Cynomolgus Monkey Chimeric Fetuses using Embryonic Stem Cells.
2015,
Pubmed Folmes,
Metabolic plasticity in stem cell homeostasis and differentiation.
2012,
Pubmed Gafni,
Derivation of novel human ground state naive pluripotent stem cells.
2013,
Pubmed Huang,
The naive state of human pluripotent stem cells: a synthesis of stem cell and preimplantation embryo transcriptome analyses.
2014,
Pubmed Katada,
Connecting threads: epigenetics and metabolism.
2012,
Pubmed Nichols,
Naive and primed pluripotent states.
2009,
Pubmed Shyh-Chang,
Influence of threonine metabolism on S-adenosylmethionine and histone methylation.
2013,
Pubmed Sperber,
The metabolome regulates the epigenetic landscape during naive-to-primed human embryonic stem cell transition.
2015,
Pubmed Theunissen,
Systematic identification of culture conditions for induction and maintenance of naive human pluripotency.
2014,
Pubmed Ware,
Derivation of naive human embryonic stem cells.
2014,
Pubmed Wu,
An alternative pluripotent state confers interspecies chimaeric competency.
2015,
Pubmed Wu,
Stem cells: A designer's guide to pluripotency.
2014,
Pubmed Wu,
Dynamic Pluripotent Stem Cell States and Their Applications.
2015,
Pubmed Ying,
The ground state of embryonic stem cell self-renewal.
2008,
Pubmed Zhou,
HIF1α induced switch from bivalent to exclusively glycolytic metabolism during ESC-to-EpiSC/hESC transition.
2012,
Pubmed