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Clayton, G.

Publications and source records attributed to Clayton, G..

3 recordsLinked to original sources

SIGLEC1 FACILITATES MACROPHAGE-CD8+ T CELL INTERACTIONS AND CORRELATES WITH CANCER IMMUNOTHERAPY RESPONSE

Antigen-presenting cell (APC) interactions with cytotoxic T cells are critical for anti-tumour immunity and response to immune checkpoint blockade (ICB), yet context-specific regulators in the tumour microenvironment remain not fully defined. Here we identify the lectin receptor SIGLEC1 as a key mediator of macrophage-T cell interactions in human melanoma. In a well-characterized patient cohort, SIGLEC1 was selectively upregulated in inflammatory macrophages physically associated with activated/exhausted CD8 T cells. Imaging and functional analyses revealed that SIGLEC1 accumulates at the macrophage-T cell interface and promotes cell clustering. SIGLEC1 ligands were enriched on activated T cells, and their blockade reduced cytotoxic cytokine production ex vivo. Single-cell (spatial) transcriptomics across independent ICB-treated melanoma cohorts showed that SIGLEC1 macrophages localize near CD8 T cells and are enriched in responders, where they also associate with T cells expressing activation/exhaustion markers. These findings define a SIGLEC1-dependent macrophage-T cell niche linked to effective immunotherapy.

immunology↗

Reducing sialylation in melanoma increases classical pathway-mediated complement activation

Based on the success in pre-clinical models, methods that reduce sialylation in tumors have progressed to clinical trials, as this improves anti-tumor cellular responses. Immune responses against cancer can also be mediated by soluble, non-cellular mechanisms, such as the complement system. Dysregulation of the complement cascade and hypersialylation are hallmarks found across tumor types. Sialic acids are known to interact with complement proteins. However, the downstream pathways involved in the regulation of the complement cascade when reducing sialylation in tumors remain unclear. Here, using human melanoma cell lines and patient samples, we show that metabolic or enzymatic targeting of sialylation directly increases the activation of the complement, enhancing C3 opsonization of tumor cells and the formation of the membrane attack complex. This is mediated by the classical pathway of the complement system, in line with increased binding of immunoglobulins to tumor cells when sialylation is impaired. Our work positions the complement cascade as a relevant anti-tumor response playing a role when sialylation is targeted for cancer treatment. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=99 SRC="FIGDIR/small/723302v1_ufig1.gif" ALT="Figure 1"> View larger version (20K): org.highwire.dtl.DTLVardef@1480999org.highwire.dtl.DTLVardef@6e3c44org.highwire.dtl.DTLVardef@1369dd0org.highwire.dtl.DTLVardef@b2c455_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗

CMAS dampens anti-tumor immunity and associates with response to neoadjuvant immunotherapy in melanoma

Identifying immune-regulatory pathways to predict response is crucial for the efficacy of immune checkpoint blockade (ICB) immunotherapies. Sialylation is upregulated in tumor cells and modulates immune responses in cancer, yet its impact on patient clinical outcome and the spatial organization of the tumor microenvironment remain unclear. Here, using publicly available single-cell RNA sequencing data we show that expression of the sialylation master regulator CMAS in melanoma cells correlates with poorer patient survival. Using a murine melanoma model, we demonstrate that Cmas deletion in tumor cells severely impaired tumor growth and improved anti-tumor lymphoid and myeloid cell responses, increasing tumor cell-intrinsic susceptibility to interferon-gamma-, CD4+ T cell-, and macrophage-mediated killing. Single-cell spatial transcriptomics on neoadjuvant ICB-treated melanoma patient tumor biopsies revealed that CMAS expression in tumor cells inversely correlated with tumor cell proximity to and activation status of T cells and macrophages. Furthermore, expression of CMAS in tumor cells was increased in patients who did not respond to immunotherapy, compared to responders. Overall, our work identifies CMAS as a key modulator of tumor-immune dynamics associated with survival and response to neoadjuvant ICB immunotherapy in melanoma patients.

cancer biology↗