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January 23, 2026Nature3 citationsOpen Access

The transition from monocyte to tissue-resident macrophage requires DHPS

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GCGustavo CarrizoPLPianpian LinSLSeung Hyun Lee

Key Points

  • The study investigates the role of deoxyhypusine synthase in the transition of monocytes to tissue-resident macrophages (RTMs).
  • Used Dhps-ΔM mice lacking DHPS in myeloid cells to study the effects on RTM differentiation.
  • Performed transcriptional analysis and proteomics on DHPS-deficient macrophages.
  • Sequenced ribosome-engaged transcripts to identify mRNAs involved in crucial cellular functions.
  • Imaged macrophages in tissues to observe morphological and functional differences.
  • DHPS-deficient macrophages showed a global defect in RTM formation across various tissues.
  • Transcriptional analyses revealed a block in differentiation to mature RTMs.
  • Proteomics indicated impairments in cell adhesion and signalling pathways.
  • Observed differences in morphology and tissue interactions linked to failed RTM differentiation.

Abstract

Abstract Tissue-resident macrophages (RTMs) form during embryogenesis, self-renew locally, and regulate tissue homeostasis by clearing dead cells and debris 1–6 . During tissue damage, however, bone-marrow-derived monocytes enter tissues and differentiate into RTMs, repairing the tissue and replenishing macrophages in the niche 1 . The universal cell-intrinsic mechanisms that control the monocyte-to-RTM transition and the maintenance of mature RTMs across tissues remain elusive 3 . Here we show that deoxyhypusine synthase (DHPS), an enzyme that mediates spermidine-dependent hypusine modification of translation factor eIF5A 5,7 , is required for RTM differentiation and maintenance. Mice with myeloid cell lack of DHPS ( Dhps -ΔM mice) had a global defect in RTMs across tissues, resulting in persistent but ultimately futile monocyte influx. Transcriptional analyses of DHPS-deficient macrophages indicated a block in their ability to differentiate into mature RTMs, whereas proteomics revealed defects in cell adhesion and signalling pathways. Sequencing of ribosome-engaged transcripts identified a subset of mRNAs involved in cell adhesion and signalling that rely on DHPS for efficient translation. Imaging of DHPS-deficient macrophages in tissues showed differences in morphology and tissue interactions, which were correlated with their failed RTM differentiation. DHPS-deficient macrophages were also defective in critical homeostatic RTM functions including efferocytosis and tissue maintenance. Together, our results demonstrate a cell-intrinsic, tissue-agnostic pathway that drives differentiation of monocyte-derived macrophages into RTMs.

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Cite This Study

Carrizo et al. (2026) studied this question.

synapsesocial.com/papers/697310b0c8125b09b0d20535https://doi.org/10.1038/s41586-025-09972-2
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