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Research Article | Open Access

Nuclear fragile X mental retardation-interacting protein 1-mediated ribophagy regulates immune function of dendritic cells in polymicrobial sepsis

Li-yu Zheng1,‡ , Peng-yi He2,‡, Peng-yue Zhao3, Yu Duan1, Meng-yao Wu1, Shu-ting Wei1, Yao Wu1, Ning Dong1, Lei Zheng4, Ren-qi Yao1,3 ( ), Yong-ming Yao1( )
Medical Innovation Research Department of the Chinese PLA General Hospital, 28 Fuxing Road, Haidian District, Beijing 100853, China
School of Medicine, Nankai University, 94 Weijin Road, Nankai District, Tianjin 30071, China
Department of General Surgery, First Medical Center of the Chinese PLA General Hospital, 28 Fuxing Road, Haidian District, Beijing 100853, China
Department of Endocrinology, Fourth Medical Center of the Chinese PLA General Hospital, 51 Fuxing Road, Haidian District, Beijing 100048, China

‡These authors contributed equally to this manuscript.

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Highlights

• Nuclear fragile X mental retardation-interacting protein 1 (NUFIP1)–mediated ribophagy is essential for maintaining dendritic cell function during the early stages of sepsis.

• NUFIP1 mitigates excessive endoplasmic reticulum stress via the EIF2AK3-ATF4–damage-inducible transcript 3 pathway.

• NUFIP1 directly interacts with ATF4 and regulates its nuclear translocation.

• NUFIP1 plays a critical regulatory role in sepsis, and represents a novel target for sepsis therapy.

Abstract

Background

Dendritic cells are crucial in the development of sepsis, yet the effect of ribophagy on dendritic cell activation remains unclear. This study aimed to investigate the potential role of nuclear fragile X mental retardation-interacting protein 1 (NUFIP1), a selective autophagy receptor, on sequestering ribosomes in autophagosomes to maintain dendritic cell function during early stages of sepsis.

Methods

Splenic dendritic cells were isolated using CD11c+ microbeads and treated with lipopolysaccharide. Sepsis models were generated using cecal ligation and puncture. Expression of dendritic cell surface molecules was detected using flow cytometry. Cytokine level was quantified using enzyme-linked immunosorbent assay kits. Laser scanning confocal microscopy was employed to observe ribophagy and endoplasmic reticulum (ER) morphology. Transmission electron microscopy was used to examine autophagosomes containing ribosomes. Western blotting was performed to determine the levels of ribophagy- and ER stress-associated proteins.

Results

The results showed that NUFIP1-mediated ribophagy was significantly activated under septic challenge and facilitated the functional activation of dendritic cells by mitigating excessive ER stress. Deletion of Nufip1 resulted in reduced expression of surface molecules on dendritic cells, inhibited T-cell proliferation, exacerbated peripheral immunosuppression and severe multiple organ damage, and increased mortality. Salubrinal, a specific inhibitor of EIF2A dephosphorylation, rescued dendritic cell dysfunction in septic mice with Nufip1 deficiency. Mechanistically, NUFIP1 interacted directly with ATF4 and regulated its nuclear translocation.

Conclusions

These findings suggest that NUFIP1 regulates ER stress through the EIF2AK3–ATF4–damage-inducible transcript 3 pathway, highlighting its critical regulatory role in sepsis. Thus, NUFIP1 represents a new target for sepsis therapy.

Graphical Abstract

References

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Burns & Trauma
Article number: tkaf034

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Cite this article:
Zheng L-y, He P-y, Zhao P-y, et al. Nuclear fragile X mental retardation-interacting protein 1-mediated ribophagy regulates immune function of dendritic cells in polymicrobial sepsis. Burns & Trauma, 2025, 13(9): tkaf034. https://doi.org/10.1093/burnst/tkaf034

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Received: 02 September 2024
Revised: 24 February 2025
Accepted: 14 May 2025
Published: 19 May 2025
© The Author(s) 2025. Published by Oxford University Press.

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