Dysregulated alveolar type 2 epithelial cell proteostasis promotes fibrogenic macrophage migration inhibitory factor-CD74 signaling.

dc.contributor.author

Kim, Sang-Hun

dc.contributor.author

Nouws, Jessica

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Ruwisch, Jannik

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Woodard, Gavitt A

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Cooley, Joseph

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Khoury, Johad

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Sun, Huanxing

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Doherty, Edward

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Piecychna, Marta

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Manning, Edward P

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Kang, Min-Jong

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Bruscia, Emanuela M

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Wei, Huanhuan

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Zhang, Yuening

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Yarovinsky, Timur O

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Hwa, John

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Zacharias, William J

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Ingram, Jennifer

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Lee, Chun Geun

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Elias, Jack A

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Kaminski, Naftali

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Redente, Elizabeth F

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Herzog, Erica L

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Prasse, Antje

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Bucala, Richard

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Sauler, Maor

dc.date.accessioned

2026-07-02T14:34:01Z

dc.date.available

2026-07-02T14:34:01Z

dc.date.issued

2025-12

dc.description.abstract

Aberrant proteostasis in alveolar type 2 epithelial cells (AEC2s) contributes to idiopathic pulmonary fibrosis (IPF), but the role of the ubiquitin-proteasome system (UPS) is unclear. Here, we show that UPS disruption in AEC2s amplifies profibrotic signaling to macrophages through macrophage migration inhibitory factor (MIF) family proteins in several models. Modeling UPS disruption with an AEC2-specific cullin 3 (Cul3) deletion produced spontaneous fibrosis in a physiological aging mouse model and exacerbated fibrosis in the bleomycin-induced lung injury model. This was accompanied by expansion of transitional epithelial states and increased MIF and MIF-2 in lung tissue and bronchoalveolar lavage fluid (BALF) in the model. Global or conditional AEC2-specific deletions of Mif or Mif-2 attenuated fibrosis in the bleomycin-treated mouse model, as did conditional deletions of Cd74, the cognate receptor for MIF and MIF-2, in C-X3-C motif chemokine receptor 1 (Cx3cr1)-expressing and platelet factor 4 (Pf4)-expressing cells. Pharmacological inhibition of MIF attenuated fibrosis in bleomycin-treated and transforming growth factor-β1 (TGFB1) transgenic mouse models and in ex vivo human precision-cut lung slices treated with fibrotic cocktail. In study participants with IPF, BALF MIF was elevated compared with that in study participants without IPF. In participants with IPF, BALF MIF greater than 4000 picograms per milliliter was associated with increased mortality compared with participants with IPF with lower MIF. Together, these findings define a UPS-sensitive epithelial-macrophage signaling connection and identify MIF-CD74 cross-talk as a potential therapeutic target in fibrotic lung disease.

dc.identifier.issn

1946-6234

dc.identifier.issn

1946-6242

dc.identifier.uri

https://hdl.handle.net/10161/34927

dc.language

eng

dc.publisher

American Association for the Advancement of Science (AAAS)

dc.relation.ispartof

Science translational medicine

dc.relation.isversionof

10.1126/scitranslmed.adr2277

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Lung

dc.subject

Macrophages

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Animals

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Mice, Inbred C57BL

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Mice, Transgenic

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Humans

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Mice

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Disease Models, Animal

dc.subject

Proteasome Endopeptidase Complex

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Intramolecular Oxidoreductases

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Bleomycin

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Ubiquitin

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Antigens, Differentiation, B-Lymphocyte

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Histocompatibility Antigens Class II

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Macrophage Migration-Inhibitory Factors

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Signal Transduction

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Male

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Idiopathic Pulmonary Fibrosis

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Alveolar Epithelial Cells

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Proteostasis

dc.title

Dysregulated alveolar type 2 epithelial cell proteostasis promotes fibrogenic macrophage migration inhibitory factor-CD74 signaling.

dc.type

Journal article

duke.contributor.orcid

Ingram, Jennifer|0000-0002-5269-8864

pubs.begin-page

eadr2277

pubs.issue

827

pubs.organisational-group

Duke

pubs.organisational-group

School of Medicine

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Clinical Science Departments

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Medicine

pubs.organisational-group

Pathology

pubs.organisational-group

Surgery

pubs.organisational-group

Medicine, Pulmonary, Allergy, and Critical Care Medicine

pubs.organisational-group

Surgery, Surgical Sciences

pubs.publication-status

Published

pubs.volume

17

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