<p>Most neuroendocrine cancers lack caspase 8 protein expression. While this feature was thought to facilitate escape from extrinsic apoptosis, its cancer-regulatory function has remained unexplored. Here, we devise a mouse model of small cell lung cancer (SCLC) recapitulating the lack of expression of caspase 8 seen in humans and uncover an unexpected role for necroptosis-fueled pre-tumoral inflammation resulting in reprogramming towards a neuronal progenitor cell-like state and increased metastatic disease. Notably, transcriptional signatures of this cellular state are enriched in relapsed and metastatic human SCLC. Mechanistically, caspase 8 loss within the pre-tumoral niche promotes inflammation marked by increased recruitment of regulatory T cells (Tregs) which are responsible for the promotion of metastatic disease. Importantly, inactivation of the necroptosis executioner MLKL reverses pre-tumoral inflammation, decreases metastasis as well as neuronal-like reprogramming. Taken together, our findings suggest that pre-tumoral inflammatory cell death contributes to neuronal progenitor mimicry, immunosuppression and increased metastasis in SCLC.</p>

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Lack of caspase 8 directs neuronal progenitor-like reprogramming and small cell lung cancer progression

  • Ariadne Androulidaki,
  • Fanyu Liu,
  • Christina M. Bebber,
  • Ilmars Kisis,
  • Vignesh Sakthivelu,
  • Pascal Hunold,
  • Lioba Koerner,
  • Alina Dahlhaus,
  • Fatma Isil Yapici,
  • Christina Grimm,
  • Alicja Pacholewska,
  • Sofya Tishina,
  • Franka Doskotz,
  • Lucia A. Torres Fernández,
  • Jenny Stroh,
  • Ali T. Abdallah,
  • Julia Beck,
  • Lejla Mulalic,
  • Anna Schmitt,
  • Holger Grüll,
  • Thorsten Persigehl,
  • Alexander Quaas,
  • Martin Peifer,
  • Johannes Brägelmann,
  • H. Christian Reinhardt,
  • Pascal Nieper,
  • Robert Hänsel-Hertsch,
  • Roman K. Thomas,
  • Julie George,
  • Michal R. Schweiger,
  • Manolis Pasparakis,
  • Filippo Beleggia,
  • Silvia von Karstedt

摘要

Most neuroendocrine cancers lack caspase 8 protein expression. While this feature was thought to facilitate escape from extrinsic apoptosis, its cancer-regulatory function has remained unexplored. Here, we devise a mouse model of small cell lung cancer (SCLC) recapitulating the lack of expression of caspase 8 seen in humans and uncover an unexpected role for necroptosis-fueled pre-tumoral inflammation resulting in reprogramming towards a neuronal progenitor cell-like state and increased metastatic disease. Notably, transcriptional signatures of this cellular state are enriched in relapsed and metastatic human SCLC. Mechanistically, caspase 8 loss within the pre-tumoral niche promotes inflammation marked by increased recruitment of regulatory T cells (Tregs) which are responsible for the promotion of metastatic disease. Importantly, inactivation of the necroptosis executioner MLKL reverses pre-tumoral inflammation, decreases metastasis as well as neuronal-like reprogramming. Taken together, our findings suggest that pre-tumoral inflammatory cell death contributes to neuronal progenitor mimicry, immunosuppression and increased metastasis in SCLC.