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Impaired SNX9 Expression in Immune Cells during Chronic Inflammation: Prognostic and Diagnostic Implications
Eliran Ish-Shalom1, Yaron Meirow2, Moshe Sade-Feldman2
1Lautenberg Center for General and Tumor Immunology, Israel-Canada Medical Research Institute, Faculty of Medicine, Hebrew University, Jerusalem 91120, Israel; and ImProDia Ltd., Herzliya Pituah 46723, Israel.
Insights
Sorting nexin 9 (SNX9) is downregulated in chronic inflammation, indicating immune suppression. This reduction is reversible and suggests SNX9 as a potential biomarker for immune status and disease progression.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Chronic inflammation is linked to immunosuppression and reduced T-cell receptor CD247 expression.
- Identifying reliable biomarkers for immune status in chronic inflammatory diseases is crucial.
Purpose of the Study:
- To discover new biomarkers for assessing immune impairment in chronic inflammation.
- To investigate the role and regulation of sorting nexin 9 (SNX9) in chronic inflammatory conditions.
Main Methods:
- Analysis of SNX9 expression in mouse models of chronic inflammation (infection, cancer, autoimmune disease).
- Investigated the role of myeloid-derived suppressor cells (MDSCs) in SNX9 downregulation.
- Assessed the reversibility of SNX9 downregulation and immune restoration.
Main Results:
- Sorting nexin 9 (SNX9) expression is downregulated in chronic inflammation, preceding CD247 reduction.
- Myeloid-derived suppressor cells (MDSCs) were identified as responsible for SNX9 downregulation.
- SNX9 downregulation is reversible upon neutralization of inflammation or MDSCs.
- Reduced SNX9 levels were observed in mouse models and human colorectal cancer patients.
Conclusions:
- SNX9 serves as an early potential biomarker for immunosuppression in chronic inflammation.
- SNX9 downregulation is a reversible consequence of the inflammatory immune environment.
- SNX9 holds promise as a diagnostic and prognostic biomarker for immune status in various chronic inflammatory diseases.
Abstract:
Chronic inflammation is associated with immunosuppression and downregulated expression of the TCR CD247. In searching for new biomarkers that could validate the impaired host immune status under chronic inflammatory conditions, we discovered that sorting nexin 9 (SNX9), a protein that participates in early stages of clathrin-mediated endocytosis, is downregulated as well under such conditions. SNX9 expression was affected earlier than CD247 by the generated harmful environment, suggesting that it is a potential marker sensing the generated immunosuppressive condition. We found that myeloid-derived suppressor cells, which are elevated in the course of chronic inflammation, are responsible for the observed SNX9 reduced expression. Moreover, SNX9 downregulation is reversible, as its expression levels return to normal and immune functions are restored when the inflammatory response and/or myeloid-derived suppressor cells are neutralized. SNX9 downregulation was detected in numerous mouse models for pathologies characterized by chronic inflammation such as chronic infection (Leishmania donovani), cancer (melanoma and colorectal carcinoma), and an autoimmune disease (rheumatoid arthritis). Interestingly, reduced levels of SNX9 were also observed in blood samples from colorectal cancer patients, emphasizing the feasibility of its use as a diagnostic and prognostic biomarker sensing the host's immune status and inflammatory stage. Our new discovery of SNX9 as being regulated by chronic inflammation and its association with immunosuppression, in addition to the CD247 regulation under such conditions, show the global impact of chronic inflammation and the generated immune environment on different cellular pathways in a diverse spectrum of diseases.
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