4.8 Article

Evolution of imprinting via lineage-specific insertion of retroviral promoters

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NATURE COMMUNICATIONS
卷 10, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-13662-9

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资金

  1. CIHR [PJT-153049, MOP-119357]
  2. NSERC Discovery Grant [2015-05228, 386979-12]
  3. MEXT KAKENHI [15H05579, JP18H05553, 15H05242, 18H04005]
  4. Primate Research Institute, Kyoto University
  5. Wildlife Research Center, Kyoto University
  6. Genome Research for BioResource, NODAI Genome Research Center, Tokyo University of Agriculture
  7. Grants-in-Aid for Scientific Research [15H05579] Funding Source: KAKEN

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Imprinted genes are expressed from a single parental allele, with the other allele often silenced by DNA methylation (DNAme) established in the germline. While species-specific imprinted orthologues have been documented, the molecular mechanisms underlying the evolutionary switch from biallelic to imprinted expression are unknown. During mouse oogenesis, gametic differentially methylated regions (gDMRs) acquire DNAme in a transcription-guided manner. Here we show that oocyte transcription initiating in lineage-specific endogenous retroviruses (ERVs) is likely responsible for DNAme establishment at 4/6 mouse-specific and 17/110 human-specific imprinted gDMRs. The latter are divided into Catarrhini- or Hominoidea-specific gDMRs embedded within transcripts initiating in ERVs specific to these primate lineages. Strikingly, imprinting of the maternally methylated genes Impact and Slc38a4 was lost in the offspring of female mice harboring deletions of the relevant murine-specific ERVs upstream of these genes. Our work reveals an evolutionary mechanism whereby maternally silenced genes arise from biallelically expressed progenitors.

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