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Publication : Chemotherapy-induced transposable elements activate MDA5 to enhance haematopoietic regeneration.

First Author  Clapes T Year  2021
Journal  Nat Cell Biol Volume  23
Issue  7 Pages  704-717
PubMed ID  34253898 Mgi Jnum  J:337400
Mgi Id  MGI:6725712 Doi  10.1038/s41556-021-00707-9
Citation  Clapes T, et al. (2021) Chemotherapy-induced transposable elements activate MDA5 to enhance haematopoietic regeneration. Nat Cell Biol 23(7):704-717
abstractText  Haematopoietic stem cells (HSCs) are normally quiescent, but have evolved mechanisms to respond to stress. Here, we evaluate haematopoietic regeneration induced by chemotherapy. We detect robust chromatin reorganization followed by increased transcription of transposable elements (TEs) during early recovery. TE transcripts bind to and activate the innate immune receptor melanoma differentiation-associated protein 5 (MDA5) that generates an inflammatory response that is necessary for HSCs to exit quiescence. HSCs that lack MDA5 exhibit an impaired inflammatory response after chemotherapy and retain their quiescence, with consequent better long-term repopulation capacity. We show that the overexpression of ERV and LINE superfamily TE copies in wild-type HSCs, but not in Mda5(-/-) HSCs, results in their cycling. By contrast, after knockdown of LINE1 family copies, HSCs retain their quiescence. Our results show that TE transcripts act as ligands that activate MDA5 during haematopoietic regeneration, thereby enabling HSCs to mount an inflammatory response necessary for their exit from quiescence.
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