4.7 Article

Heritable L1 retrotransposition in the mouse primordial germline and early embryo

期刊

GENOME RESEARCH
卷 27, 期 8, 页码 1395-1405

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gr.219022.116

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资金

  1. National Health and Medical Research Council (NHMRC) [GNT1106214]
  2. Australian NHMRC [GNT1042449, GNT1045991, GNT1067983, GNT1068789, GNT1106206]
  3. Mater Foundation
  4. European Union [259743, PIOFGA2013623324]
  5. National Institute of General Medical Sciences [1R01GM09987501]
  6. Plan Nacional de I+D+I
  7. Ministerio de Ciencia e Innovacion [FIS-FEDER-PI11/01489, FIS-FEDER-PI14/02152]
  8. European Research Council [ERC-STG-2012-233764]
  9. Howard Hughes Medical Institute [IECS-55007420]
  10. Wellcome Trust University of Edinburgh Institutional Strategic Support Fund (ISFF2)
  11. University of Queensland International Postgraduate Research Scholarship (IPRS)
  12. Australian Postgraduate Award (APA)
  13. German Research Foundation (DFG)Germany postdoctoral fellowship [B04460/11]
  14. Australian Research Council Discovery Early Career Researcher Award [DE150101117]
  15. [CICE-FEDER-P12-CTS-2256]
  16. Australian Research Council [DE150101117] Funding Source: Australian Research Council

向作者/读者索取更多资源

LINE-1 (L1) retrotransposons are a noted source of genetic diversity and disease in mammals. To expand its genomic footprint, L1 must mobilize in cells that will contribute their genetic material to subsequent generations. Heritable L1 insertions may therefore arise in germ cells and in pluripotent embryonic cells, prior to germline specification, yet the frequency and predominant developmental timing of such events remain unclear. Here, we applied mouse retrotransposon capture sequencing (mRC-seq) and whole-genome sequencing (WGS) to pedigrees of C57BL/6) animals, and uncovered an L1 insertion rate of >= 1 event per eight births. We traced heritable L1 insertions to pluripotent embryonic cells and, strikingly, to early primordial germ cells (PGCs). New L1 insertions bore structural hallmarks of target-site primed reverse transcription (TPRT) and mobilized efficiently in a cultured cell retrotransposition assay. Together, our results highlight the rate and evolutionary impact of heritable L1 retrotransposition and reveal retrotransposition-mediated genomic diversification as a fundamental property of pluripotent embryonic cells in vivo.

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