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Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes
Published on: May 10, 2022
tRNA-m1A modification safeguards fetal liver HSPCs from DNA damage by maintaining iron homeostasis
Yining Liu1, Yichen Ma2, Panfeng Li3
1State Key Laboratory of Organ Regeneration and Reconstruction, Beijing Institute for Stem Cell and Regenerative Medicine, Institute of Zoology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Beijing, China.
Abstract:
Hematopoietic stem and progenitor cell (HSPC) development requires finely tuned gene expression programs, yet the role of transfer RNA (tRNA) modifications in this process remains largely unknown. In this study, we uncover the essential function of the tRNA methyltransferase, Trmt61a, in sustaining fetal liver HSPCs through N1-methyladenosine (m1A) deposition. Ribosome profiling revealed globally declined translation efficiency because of translational blockage upon Trmt61a loss in HSPCs, notably of the transferrin receptor (Tfrc). Mechanistically, m1A reduction caused ribosomal stalling at arginine-CGG codons within Tfrc messenger RNA, thereby suppressing Tfrc synthesis and leading to intracellular iron depletion. This iron deficiency triggered DNA damage and compromised HSPC survival. Our work elucidates an epitranscriptomic pathway, the Trmt61a-m1A-Tfrc axis, that safeguards HSPC integrity by linking tRNA modification to iron homeostasis and preventing DNA damage, providing mechanistic and therapeutic insights into hematopoietic disorders.
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