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Updated: Mar 7, 2026

Quantitative Analysis of Protein Expression to Study Lineage Specification in Mouse Preimplantation Embryos
Published on: February 22, 2016
Dicer, a new regulator of pluripotency exit and LINE-1 elements in mouse embryonic stem cells
Maxime Bodak1, Daniel Cirera-Salinas2, Jian Yu3
1Department of Biology RNAi and Genome Integrity IMHS Swiss Federal Institute of Technology Zurich Zurich Switzerland; Life Science Zurich Graduate School Molecular Life Science Program University of Zurich Switzerland.
Abstract:
A gene regulation network orchestrates processes ensuring the maintenance of cellular identity and genome integrity. Small RNAs generated by the RNAse III DICER have emerged as central players in this network. Moreover, deletion of Dicer in mice leads to early embryonic lethality. To better understand the underlying mechanisms leading to this phenotype, we generated Dicer-deficient mouse embryonic stem cells (mESCs). Their detailed characterization revealed an impaired differentiation potential, and incapacity to exit from the pluripotency state. We also observed a strong accumulation of LINE-1 (L1s) transcripts, which was translated at protein level and led to an increased L1s retrotransposition. Our findings reveal Dicer as a new essential player that sustains mESCs self-renewal and genome integrity by controlling L1s regulation.
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