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Epigenetic integrity of paternal imprints enhances the developmental potential of androgenetic haploid embryonic stem cells 被引量:1

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摘要 The use of two inhibitors of Mek1/2 and Gsk3β(2i)promotes the generation of mouse diploid and haploid embryonic stem cells(ESCs)from the inner cell mass of biparental and uniparental blastocysts,respectively.However,a system enabling long-term maintenance of imprints in ESCs has proven challenging.Here,we report that the use of a two-step a2i(alternative two inhibitors of Src and Gsk3β,TSa2i)derivation/culture protocol results in the establishment of androgenetic haploid ESCs(AG-haESCs)with stable DNA methylation at paternal DMRs(differentially DNA methylated regions)up to passage 60 that can efficiently support generating mice upon oocyte injection.We also show coexistence of H3K9me3 marks and ZFP57 bindings with intact DMR methylations.Furthermore,we demonstrate that TSa2itreated AG-haESCs are a heterogeneous cell population regarding paternal DMR methylation.Strikingly,AGhaESCs with late passages display increased paternal-DMR methylations and improved developmental potential compared to early-passage cells,in part through the enhanced proliferation of H19-DMR hypermethylated cells.Together,we establish AG-haESCs that can longterm maintain paternal imprints.
出处 《Protein & Cell》 SCIE CSCD 2022年第2期102-119,共18页 蛋白质与细胞(英文版)
基金 This study was supported by Genome Tagging Project and grants from the Chinese Academy of Sciences,the National Key Research and Development Program of China the National Natural Science Foundation of China(2019YFA0109900,2020YFA0509000,XDB19010204,QYZDJ-SSW-SMC023,Facility-based Open Research Program,31821004,32030029,and 31730062).
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  • 1Leeb M, Wutz A. Nature 2011; 479:131-134.
  • 2Elling U, Taubensehmid J, Wirnsberger G, et al. Cell Stem Cell 2011; 9:563-574.
  • 3Yang H, Shi L, Wang BA, et al. Cell 2012; 149:605-617.
  • 4Li W, Li X, Li T, etal. CellStem Cell2014; 14:404-414.
  • 5Yang H, Liu Z, Ma Y, et aL Cell Res 2013; 23:1187-1200.
  • 6Zhong C, Yin Q, Xie Z, et al. Cell Stem Cell 2015; 17:221-232.
  • 7Mitalipov SM, Nusser KD, Wolf DE Biol Reprod 2001; 65:253-259.
  • 8Paull D, Emmanuele V, Weiss KA, et al. Nature 2013; 493:632-637.
  • 9Zhong C, Xie Z, Yin Q, et al. Cell Res 2016; 26:131-134.
  • 10Sagi I, Chia G, Golan-Lev T, et al. Nature 2016; 532:107-111.

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