4.7 Article

XIAP promotes melanoma growth by inducing tumour neutrophil infiltration

期刊

EMBO REPORTS
卷 23, 期 6, 页码 -

出版社

WILEY
DOI: 10.15252/embr.202153608

关键词

melanoma; neutrophil; RIPK2; TAB1; XIAP

资金

  1. German Cancer Aid [70114685, 70114225, 70114473]
  2. Deutsche Forschungsgemeinschaft (DFG) [KA 2853/4-1, SFB1403, 414786233, SFB1218, 269925409]
  3. graduate program in Pharmacology and Experimental Therapeutics at the University of Cologne - Bayer
  4. Projekt DEAL

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The elevated expression of XIAP in malignant melanoma suggests its role in apoptosis resistance and melanoma progression. In addition to its anti-apoptotic function, XIAP also mediates cellular inflammatory signaling and promotes immune response against bacterial infection. This study shows that XIAP plays a crucial role in melanoma neutrophil infiltration, providing insights for potential targeted therapies.
Elevated expression of the X-linked inhibitor of apoptosis protein (XIAP) has been frequently reported in malignant melanoma suggesting that XIAP renders apoptosis resistance and thereby supports melanoma progression. Independent of its anti-apoptotic function, XIAP mediates cellular inflammatory signalling and promotes immunity against bacterial infection. The pro-inflammatory function of XIAP has not yet been considered in cancer. By providing detailed in vitro analyses, utilising two independent mouse melanoma models and including human melanoma samples, we show here that XIAP is an important mediator of melanoma neutrophil infiltration. Neutrophils represent a major driver of melanoma progression and are increasingly considered as a valuable therapeutic target in solid cancer. Our data reveal that XIAP ubiquitylates RIPK2, involve TAB1/RIPK2 complex and induce the transcriptional up-regulation and secretion of chemokines such as IL8, that are responsible for intra-tumour neutrophil accumulation. Alteration of the XIAP-RIPK2-TAB1 inflammatory axis or the depletion of neutrophils in mice reduced melanoma growth. Our data shed new light on how XIAP contributes to tumour growth and provides important insights for novel XIAP targeting strategies in cancer.

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