Macrophage restriction in Drosophila wounds and tumors via a matrix degradation–moderating protease inhibitor

Breaches of epithelial homeostasis trigger an inflammatory response. Not only initiation but also negative regulation of the response is critical, as autoinflammation can cause tissue damage and chronic disease. Epithelial breaches can be signaled by damage-associated molecular patterns (DAMPs), including basement membrane (BM) degradation, that attract inflammatory cells. Here, we show that the conserved glycosylphosphatidylinositol-linked thioester-containing protein Tep3 from Drosophila , the ortholog of human CD109, limits innate immune cell attachment to damaged and transformed epithelia. Tep3 is induced in wounds alongside the matrix metalloprotease 1 (MMP1). Tep3 inhibits MMP1 proteolytic activity, reducing production of a BM DAMP that triggers macrophage association. A Drosophila tumor up-regulates Tep3 to limit an MMP1- and macrophage-dependent antitumor immune response, thus accelerating progression and host death. Hence, fly tumors can exploit a physiological anti-inflammatory axis to pathologically limit their immune restriction.

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Publication Details

Journal
Science Advances
Published
2026-09-25
DOI
https://doi.org/10.1126/sciadv.aec5131
Primary Topic
Invertebrate Immune Response Mechanisms
Type
article
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article

Macrophage restriction in Drosophila wounds and tumors via a matrix degradation–moderating protease inhibitor

Kavya Adiga, David H. Bilder, Yoshiki Sakai, Tsai‐Ching Hsi et al.
Science Advances
Invertebrate Immune Response Mechanisms
article

Macrophage restriction in Drosophila wounds and tumors via a matrix degradation–moderating protease inhibitor

Kavya Adiga, David H. Bilder, Yoshiki Sakai, Tsai‐Ching Hsi, Matin Nawabi, Sofia Mendez-Lopez
article en

Abstract

Breaches of epithelial homeostasis trigger an inflammatory response. Not only initiation but also negative regulation of the response is critical, as autoinflammation can cause tissue damage and chronic disease. Epithelial breaches can be signaled by damage-associated molecular patterns (DAMPs), including basement membrane (BM) degradation, that attract inflammatory cells. Here, we show that the conserved glycosylphosphatidylinositol-linked thioester-containing protein Tep3 from Drosophila , the ortholog of human CD109, limits innate immune cell attachment to damaged and transformed epithelia. Tep3 is induced in wounds alongside the matrix metalloprotease 1 (MMP1). Tep3 inhibits MMP1 proteolytic activity, reducing production of a BM DAMP that triggers macrophage association. A Drosophila tumor up-regulates Tep3 to limit an MMP1- and macrophage-dependent antitumor immune response, thus accelerating progression and host death. Hence, fly tumors can exploit a physiological anti-inflammatory axis to pathologically limit their immune restriction.

Science AdvancesVol. 12(39)
University of California, Berkeley (US)
Good health and well-being
Openalex Percentile: Top 19%
Invertebrate Immune Response Mechanisms
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