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Sucker, A.

Publications and source records attributed to Sucker, A..

2 recordsLinked to original sources

Multiomic profiling of a unique in-transit melanoma cohort identifies melanoma differentiation as predictor of tumor progression and therapy response

Melanoma patients with in-transit metastasis (ITM), a stage of disease where melanoma has metastasized to sites in between the primary lesion and draining lymph node, vary significantly in their clinical outcomes, but the biology driving differential outcomes in ITM is poorly understood. To elucidate the mechanisms of differential outcomes, we utilized multimodal molecular profiling (WES, RNA-seq, highly multiplexed immunofluorescence, spatial transcriptomics) in 1) evolutionary analysis of longitudinal tumor samples and 2) identifying prognostic tumor intrinsic and microenvironmental features in a unique cohort of patients with unresectable ITM. Among other findings, we observed a persistent dedifferentiated AXL/NGFR clonal lineage pre-existing and following immune checkpoint blockade in in-transit and distant metastases. Concordantly, we found that low pigmentation and high T cell exhaustion signatures were independently associated with distant progression. Our findings highlight tumor cell state and immune dysfunction as key predictors and potential biomarkers of metastatic risk in ITM. STATEMENT OF SIGNIFICANCEWhat drives distant progression in melanoma is unclear. Analyzing tumor and immune features in a rare in-transit melanoma patient cohort, we identify biological signals highlighting how immune and tumor states observable in pre-distant metastasis melanomas shape long-term outcomes, and nominate potential prognostic biomarkers.

cancer biology↗

Constitutive expression of IκBζ promotes tumor growth and immunotherapy resistance in melanoma

BackgroundI{kappa}B{zeta}, a rather unknown co-regulator of NF-{kappa}B, is mostly inducibly expressed and can either activate or repress a specific subset of NF-{kappa}B target genes. While its role as a transcriptional regulator of various cytokines and chemokines in immune cells has been revealed, I{kappa}B{zeta}s function in solid cancer remains unclear. MethodsWe investigated I{kappa}B{zeta} expression in melanoma, and assessed its impact on target gene expression, tumor growth, and response to immunotherapy in melanoma cell lines, mouse models, and patient samples. ResultsUnlike in other cell types, I{kappa}B{zeta} protein was found to be constitutively expressed in a subfraction of melanoma cell lines, and around 35% of melanoma cases. This atypical expression pattern of I{kappa}B{zeta} did not correlate with its mRNA levels or known driver mutations, but instead seemed to result from changes in its post-transcriptional or post-translational regulation. Deleting constitutively expressed I{kappa}B{zeta} abrogated the activity and chromatin association of STAT3 and p65, leading to reduced expression of the pro-proliferative cytokines IL-1{beta} and IL-6 in melanoma cells. Consequently, loss of tumor-derived I{kappa}B{zeta} suppressed self-sustained melanoma cell growth both in vitro and in vivo. Additionally, constitutive I{kappa}B{zeta} expression suppressed the induction of the chemokines CXCL9, CXCL10, and CCL5, which impaired the recruitment of NK and CD8+ T-cells to the tumor, causing resistance to -PD-1 immunotherapy in mice. Furthermore, the expression of tumor-derived I{kappa}B{zeta} also correlated with the absence of CD8+ T-cells in human melanoma samples and progressive disease during immunotherapy. ConclusionWe propose that tumor-derived I{kappa}B{zeta} could serve as a new therapeutic target and prognostic marker that characterizes melanoma with high tumor cell proliferation, cytotoxic T- and NK-cell exclusion, and unfavorable immunotherapy responses. Targeting I{kappa}B{zeta} expression might open up a new therapy option to re-establish the recruitment of cytotoxic cells, thereby resensitizing for immunotherapy. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=126 SRC="FIGDIR/small/613946v1_ufig1.gif" ALT="Figure 1"> View larger version (23K): org.highwire.dtl.DTLVardef@76389aorg.highwire.dtl.DTLVardef@17e3f1eorg.highwire.dtl.DTLVardef@161d491org.highwire.dtl.DTLVardef@1ca9f2d_HPS_FORMAT_FIGEXP M_FIG C_FIG

cancer biology↗