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Surfaceome Profiling of Rhabdomyosarcoma Reveals B7-H3 as a Mediator of Immune Evasion.

Roxane R LavoiePatricio C GargolloMohamed E AhmedYohan KimEmily BaerDoris A PhelpsCristine M CharlesworthBenjamin J MaddenLiguo WangPeter J HoughtonJohn ChevilleHaidong DongCandace F GranbergFabrice Lucien
Published in: Cancers (2021)
Novel therapeutic strategies are needed for the treatment of rhabdomyosarcoma (RMS), the most common soft-tissue sarcoma in children. By using a combination of cell surface proteomics and transcriptomic profiling of RMS and normal muscle, we generated a catalog of targetable cell surface proteins enriched in RMS tumors. Among the top candidates, we identified B7-H3 as the major immunoregulatory molecule expressed by RMS tumors. By using a large cohort of tissue specimens, we demonstrated that B7-H3 is expressed in a majority of RMS tumors while not detected in normal human tissues. Through a deconvolution analysis of the RMS tumor RNA-seq data, we showed that B7-H3-rich tumors are enriched in macrophages M1, NK cells, and depleted in CD8+-T cells. Furthermore, in vitro functional assays showed that B7-H3 knockout in RMS tumor cells increases T-cell mediated cytotoxicity. Altogether, our study uncovers new potential targets for the treatment of RMS and provides the first biological insights into the role of B7-H3 in RMS biology, paving the way for the development of next-generation immunotherapies.
Keyphrases
  • cell surface
  • rna seq
  • single cell
  • gene expression
  • endothelial cells
  • skeletal muscle
  • young adults
  • mass spectrometry
  • nk cells
  • machine learning
  • data analysis