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Osimertinib activates a TGF-β2–dependent secretory program that drives lung adenocarcinoma progression
Madhurima Ghosh, Chao Wu, Abhishek Kumar, Monique Nilsson, John V. Heymach, Weina Zhao, Jiang Yu, Xin Liu, Na Ding, Shike Wang, Guan-Yu Xiao, Angelo Chen, Kate Grimley, William K. Russell, Chad J. Creighton, Xiaochao Tan, Jonathan M. Kurie
Madhurima Ghosh, Chao Wu, Abhishek Kumar, Monique Nilsson, John V. Heymach, Weina Zhao, Jiang Yu, Xin Liu, Na Ding, Shike Wang, Guan-Yu Xiao, Angelo Chen, Kate Grimley, William K. Russell, Chad J. Creighton, Xiaochao Tan, Jonathan M. Kurie
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Research Article Cell biology Clinical Research Oncology

Osimertinib activates a TGF-β2–dependent secretory program that drives lung adenocarcinoma progression

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Abstract

EGFR-mutant lung adenocarcinomas (LUADs) that are vulnerable to the EGFR antagonist osimertinib (Osi) eventually relapse, owing in part to the emergence of drug-tolerant persister (DTP) cells that arise through epigenetic mechanisms. Intratumoral DTP cells can herald a worse clinical outcome, but the way in which DTP cells influence LUAD progression remains unclear. Osi-resistant (OR) cells exhibit typical DTP cell features, including a propensity to undergo senescence and epithelial-mesenchymal transition (EMT), which can activate heightened secretory states. Therefore, we postulated that OR cells influence LUAD progression through paracrine mechanisms. To test this hypothesis, we utilized congenic pairs of EGFR-mutant LUAD cell lines in which drug-naive (DN) cells were rendered OR by chronic exposure to escalating doses of Osi. Cocultured in vitro or coinjected into mice, paracrine signals from OR cells enhanced the growth and metastatic properties of DN cells. EMT and senescence activated nonoverlapping secretomes, and OR cells governed DN cells by undergoing EMT but not senescence. Mechanistically, Osi rapidly increased TGF-β2 levels to initiate EMT, which triggered a Golgi remodeling process that accelerated the biogenesis and anterograde trafficking of secretory vesicles. The protumorigenic activity of OR cells was diminished by depletion of EMT-dependent secreted proteins or the EMT-activating transcription factor ZEB1. These findings identify paracrine mechanisms by which OR cells drive LUAD progression.

Authors

Madhurima Ghosh, Chao Wu, Abhishek Kumar, Monique Nilsson, John V. Heymach, Weina Zhao, Jiang Yu, Xin Liu, Na Ding, Shike Wang, Guan-Yu Xiao, Angelo Chen, Kate Grimley, William K. Russell, Chad J. Creighton, Xiaochao Tan, Jonathan M. Kurie

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Figure 7

Osimertinib activates TGF-β2 secretion to initiate the EMT-dependent secretory pathway.

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Osimertinib activates TGF-β2 secretion to initiate the EMT-dependent sec...
(A) TGF-β2 WB analysis of CM and whole-cell lysate (WCL) samples from H1975 cells (DN or OR). (B) Enzyme-linked immunosorbent assays of CM samples show that increased TGF-β2 secretion is detectable 4 hours after initiating Osi treatment in H1975 DN cells. (C) Quantitative PCR analysis shows that ZEB1 mRNA levels are upregulated 24 hours after initiating Osi treatment in H1975 DN cells. (D) TGF-β2 gene promoter reporter assays. Reporters containing a 2-kb TGF-β2 gene promoter fragment or truncated (1.1 kb or 0.6 kb) fragments were transfected into HCC827 DN cells. After 48 hours, cells were treated with DMSO or 100 nM Osi for 24 hours. Values were normalized to Renilla, averaged from replicates (n = 6), and expressed relative to DMSO. Predicted transcription factor binding sites shown in schematic (left). (E) WB confirmation of SMAD2/3 dephosphorylation by 0.5 and 1 μg/mL neutralizing anti–TGF-β antibody treatment of H1975 OR cells. β-Actin served as loading control. (F) Scatter plot of Golgi areas following TGF-β neutralization in H1975 OR cells (dots). Values normalized based on nucleus area. (G) WB analysis of L1CAM in CM and WCL samples following TGF-β neutralization in H1975 OR cells. (H) WB confirmation of increased SMAD2/3 phosphorylation by recombinant TGF-β2 (100 nM) treatment of H1975 DN cells. β-Actin served as loading control. (I) Golgi areas following recombinant TGF-β2 treatment in H1975 DN cells (dots). Values normalized based on nucleus area. (J) WB analysis of L1CAM in CM and WCL samples following recombinant TGF-β2 treatment of H1975 DN cells. (K) WB analysis of L1CAM and COL6A1 in CM samples from H1975 DN cells treated for 24 hours with DMSO, 100 nM Osi, or Osi in combination with 1 μg/mL neutralizing anti–TGF-β antibody. Ponceau-stained gel included as loading control. (L) Scatter plot of Golgi areas in H1975 DN cells (dots) treated with Osi alone or in combination with neutralizing anti–TGF-β antibody. Data are the mean ± SD from a single experiment incorporating biological replicate samples (n = 3, unless otherwise indicated) and are representative of at least 2 independent experiments. One-way ANOVA with Dunnet’s post hoc test (B, C, and L). Two-tailed Student’s t test (D, F, and I).

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ISSN: 0021-9738 (print), 1558-8238 (online)

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