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Publication : Endogenous retroviruses shape pluripotency specification in mouse embryos.

First Author  de la Rosa S Year  2024
Journal  Sci Adv Volume  10
Issue  4 Pages  eadk9394
PubMed ID  38266080 Mgi Jnum  J:344642
Mgi Id  MGI:7578446 Doi  10.1126/sciadv.adk9394
Citation  de la Rosa S, et al. (2024) Endogenous retroviruses shape pluripotency specification in mouse embryos. Sci Adv 10(4):eadk9394
abstractText  The smooth and precise transition from totipotency to pluripotency is a key process in embryonic development, generating pluripotent stem cells capable of forming all cell types. While endogenous retroviruses (ERVs) are essential for early development, their precise roles in this transition remains mysterious. Using cutting-edge genetic and biochemical techniques in mice, we identify MERVL-gag, a retroviral protein, as a crucial modulator of pluripotent factors OCT4 and SOX2 during lineage specification. MERVL-gag tightly operates with URI, a prefoldin protein that concurs with pluripotency bias in mouse blastomeres, and which is indeed required for totipotency-to-pluripotency transition. Accordingly, URI loss promotes a stable totipotent-like state and embryo arrest at 2C stage. Mechanistically, URI binds and shields OCT4 and SOX2 from proteasome degradation, while MERVL-gag displaces URI from pluripotent factor interaction, causing their degradation. Our findings reveal the symbiotic coevolution of ERVs with their host cells to ensure the smooth and timely progression of early embryo development.
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