4.8 Article

Generation and trapping of a mesoderm biased state of human pluripotency

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-020-18727-8

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资金

  1. European Community's Sixth and Seventh Framework Programs [LSHG-CT-2006-018739, FP7/2007-2013-602423]
  2. MRC through the UK Regenerative Medicine Platform [MR/L012537/1, MR/R015724/1]
  3. Swedish Research Council [2015-00135]
  4. Marie Sklodowska Curie Actions, Cofund, Project INCA [600398]
  5. Bloodwise
  6. MRC [MC_U137973817, MR/L012650/1, MR/R015724/1, MR/L012537/1] Funding Source: UKRI
  7. Swedish Research Council [2015-00135] Funding Source: Swedish Research Council

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We postulate that exit from pluripotency involves intermediates that retain pluripotency while simultaneously exhibiting lineage-bias. Using a MIXL1 reporter, we explore mesoderm lineage-bias within the human pluripotent stem cell compartment. We identify a substate, which at the single cell level coexpresses pluripotent and mesodermal gene expression programmes. Functionally these cells initiate stem cell cultures and exhibit mesodermal bias in differentiation assays. By promoting mesodermal identity through manipulation of WNT signalling while preventing exit from pluripotency using lysophosphatidic acid, we 'trap' and maintain cells in a lineage-biased stem cell state through multiple passages. These cells correspond to a normal state on the differentiation trajectory, the plasticity of which is evidenced by their reacquisition of an unbiased state upon removal of differentiation cues. The use of 'cross-antagonistic' signalling to trap pluripotent stem cell intermediates with different lineage-bias may have general applicability in the efficient production of cells for regenerative medicine. Application of pluripotent cells in regenerative medicine requires an understanding of how they exit pluripotency. Here the authors demonstrate support for the idea that pluripotency exit involves pluripotent intermediates that exhibit lineage bias by identifying and trapping a mesoderm biased sub-state in culture.

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