Abstract

Regulation of the stemness factor, SOX2, by cytokine stimuli controls self-renewal and differentiation in cells. Activating mutations in EGFR are proven therapeutic targets for tyrosine kinase inhibitors (TKI) in lung adenocarcinoma, but acquired resistance to TKIs inevitably occurs. The mechanism by which stemness and differentiation signaling emerge in lung cancers to affect TKI tolerance and lung cancer dissemination has yet to be elucidated. Here, we report that cross-talk between SOX2 and TGFβ signaling affects lung cancer cell plasticity and TKI tolerance. TKI treatment favored selection of lung cancer cells displaying mesenchymal morphology with deficient SOX2 expression, whereas SOX2 expression promoted TKI sensitivity and inhibited the mesenchymal phenotype. Preselection of EGFR-mutant lung cancer cells with the mesenchymal phenotype diminished SOX2 expression and TKI sensitivity, whereas SOX2 silencing induced vimentin, but suppressed BCL2L11, expression and promoted TKI tolerance. TGFβ stimulation downregulated SOX2 and induced epithelial-to-mesenchymal transdifferentiation accompanied by increased TKI tolerance, which can interfere with ectopic SOX2 expression. SOX2-positive lung cancer cells exhibited a lower dissemination capacity than their SOX2-negative counterparts. Tumors expressing low SOX2 and high vimentin signature were associated with worse survival outcomes in patients with EGFR mutations. These findings provide insights into how cancer cell plasticity regulated by SOX2 and TGFβ signaling affects EGFR-TKI tolerance and lung cancer dissemination. SIGNIFICANCE: These findings suggest the potential of SOX2 as a prognostic marker in EGFR-mutant lung cancer, as SOX2-mediated cell plasticity regulated by TGFβ stimulation and epigenetic control affects EGFR-TKI tolerance and cancer dissemination.

Highlights

  • SOX2 belongs to the SOX (Sry-related HMG Box) family of proteins and is an important transcription factor that regulates selfrenewal in embryonic stem cells (ESC)

  • We examined SOX2 expression in the paired EGFR–tyrosine kinase inhibitors (TKI)-sensitive (HCC827 and H1975) and -tolerant (HCC827GR and H1975AZDR) cells. qPCR and immunoblotting assays revealed that SOX2 expression was downregulated in both HCC827GR and H1975AZDR cells (Fig. 1D)

  • It was observed that EGFR–TKI selection enriched the culture for cells harboring low SOX2 expression with decreased H3K27ac and H3K4me3 signals on their promotors, whereas the suppression of SOX2 expression by TGFb stimulation or epigenetic modifiers promoted TKI tolerance and cancer dissemination

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Summary

Introduction

SOX2 belongs to the SOX (Sry-related HMG Box) family of proteins and is an important transcription factor that regulates selfrenewal in embryonic stem cells (ESC). Hsiao contributed as co-first authors of this article

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