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Ly6E/K signaling to TGFβ promotes breast cancer progression, immune escape, and drug resistance

  • Midrar Alhossiny
  • , Linlin Luo
  • , William R. Frazier
  • , Noriko Steiner
  • , Yuriy Gusev
  • , Bhaskar Kallakury
  • , Eric Glasgow
  • , Karen Creswell
  • , Subha Madhavan
  • , Rakesh Kumar
  • , Geeta Upadhyay*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

96 Scopus citations

Abstract

Stem cell antigen Sca-1 is implicated in murine cancer stem cell biology and breast cancer models, but the role of its human homologs Ly6K and Ly6E in breast cancer are not established. Here we report increased expression of Ly6K/E in human breast cancer specimens correlates with poor overall survival, with an additional specific role for Ly6E in poor therapeutic outcomes. Increased expression of Ly6K/E also correlated with increased expression of the immune checkpoint molecules PDL1 and CTLA4, increased tumor-infiltrating T regulatory cells, and decreased natural killer (NK) cell activation. Mechanistically, Ly6K/E was required for TGFb signaling and proliferation in breast cancer cells, where they contributed to phosphorylation of Smad1/5 and Smad2/3. Furthermore, Ly6K/E promoted cytokine-induced PDL1 expression and activation and binding of NK cells to cancer cells. Finally, we found that Ly6K/E promoted drug resistance and facilitated immune escape in this setting. Overall, our results establish a pivotal role for a Ly6K/E signaling axis involving TGFβ in breast cancer pathophysiology and drug response, and highlight this signaling axis as a compelling realm for therapeutic invention.

Original languageEnglish
Pages (from-to)3376-3386
Number of pages11
JournalCancer Research
Volume76
Issue number11
DOIs
StatePublished - 1 Jun 2016

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