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Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer.

Publication ,  Journal Article
Ireland, AS; Hawgood, SB; Xie, DA; Barbier, MW; Lucas-Randolph, S; Tyson, DR; Zuo, LY; Witt, BL; Govindan, R; Dowlati, A; Moser, JC; Puri, S ...
Published in: bioRxiv
November 15, 2024

Neuroendocrine and tuft cells are rare, chemosensory epithelial lineages defined by expression of ASCL1 and POU2F3 transcription factors, respectively1,2. Neuroendocrine cancers, including small cell lung cancer (SCLC), frequently display tuft-like subsets, a feature linked to poor patient outcomes3-13. The mechanisms driving neuroendocrine-tuft tumour heterogeneity, and the origins of tuft-like cancers are unknown. Using multiple genetically-engineered animal models of SCLC, we demonstrate that a basal cell of origin (but not the accepted neuroendocrine origin) generates neuroendocrine-tuft-like tumours that highly recapitulate human SCLC. Single-cell clonal analyses of basal-derived SCLC further uncovers unexpected transcriptional states and lineage trajectories underlying neuroendocrine-tuft plasticity. Uniquely in basal cells, introduction of genetic alterations enriched in human tuft-like SCLC, including high MYC, PTEN loss, and ASCL1 suppression, cooperate to promote tuft-like tumours. Transcriptomics of 944 human SCLCs reveal a basal-like subset and a tuft-ionocyte-like state that altogether demonstrate remarkable conservation between cancer states and normal basal cell injury response mechanisms14-18. Together, these data suggest that the basal cell is a plausible origin for SCLC and other neuroendocrine-tuft cancers that can explain neuroendocrine-tuft heterogeneity-offering new insights for targeting lineage plasticity.

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Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

November 15, 2024

Location

United States
 

Citation

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Ireland, A. S., Hawgood, S. B., Xie, D. A., Barbier, M. W., Lucas-Randolph, S., Tyson, D. R., … Oliver, T. G. (2024). Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer. BioRxiv. https://doi.org/10.1101/2024.11.13.623500
Ireland, Abbie S., Sarah B. Hawgood, Daniel A. Xie, Margaret W. Barbier, Scarlett Lucas-Randolph, Darren R. Tyson, Lisa Y. Zuo, et al. “Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer.BioRxiv, November 15, 2024. https://doi.org/10.1101/2024.11.13.623500.
Ireland AS, Hawgood SB, Xie DA, Barbier MW, Lucas-Randolph S, Tyson DR, et al. Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer. bioRxiv. 2024 Nov 15;
Ireland, Abbie S., et al. “Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer.BioRxiv, Nov. 2024. Pubmed, doi:10.1101/2024.11.13.623500.
Ireland AS, Hawgood SB, Xie DA, Barbier MW, Lucas-Randolph S, Tyson DR, Zuo LY, Witt BL, Govindan R, Dowlati A, Moser JC, Puri S, Rudin CM, Chan JM, Elliott A, Oliver TG. Basal cell of origin resolves neuroendocrine-tuft lineage plasticity in cancer. bioRxiv. 2024 Nov 15;

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

November 15, 2024

Location

United States