Fragmentation of Small-Cell Lung Cancer Regulatory States in Heterotypic Microenvironments.
basic_science · Level V
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- Record sourced from PubMed, PMID 33531375.
- Also identified by DOI 10.1158/0008-5472.CAN-20-1036 and PMC identifier 8137564.
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Abstract
Small-cell lung cancers derive from pulmonary neuroendocrine cells, which have stem-like properties to reprogram into other cell types upon lung injury. It is difficult to uncouple transcriptional plasticity of these transformed cells from genetic changes that evolve in primary tumors or secondary metastases. Profiling of single cells is also problematic if the required sample dissociation activates injury-like signaling and reprogramming. Here we defined cell-state heterogeneities <i>in situ</i> through laser capture microdissection-based 10-cell transcriptomics coupled with stochastic-profiling fluctuation analysis. In labeled cells from a small-cell lung cancer mouse model initiated by neuroendocrine deletion of <i>Rb1</i>-<i>Trp53</i>, variations in transcript abundance revealed cell-to-cell differences in regulatory state <i>in vitro</i> and <i>in vivo</i>. Fluctuating transcripts in spheroid culture were partly shared among <i>Rb1</i>-<i>Trp53</i>-null models, and heterogeneities increased considerably when cells were delivered intravenously to colonize the liver. Colonization of immunocompromised animals drove a fractional appearance of alveolar type II-like markers and poised cells for paracrine stimulation from immune cells and hepatocytes. Immunocompetency further exaggerated the fragmentation of tumor states in the liver, yielding mixed stromal signatures evident in bulk sequencing from autochthonous tumors and metastases. Dozens of transcript heterogeneities recurred irrespective of biological context; their mapped orthologs brought together observations of murine and human small-cell lung cancer. Candidate heterogeneities recurrent in the liver also stratified primary human tumors into discrete groups not readily explained by molecular subtype but with prognostic relevance. These data suggest that heterotypic interactions in the liver and lung are an accelerant for intratumor heterogeneity in small-cell lung cancer. SIGNIFICANCE: These findings demonstrate that the single-cell regulatory heterogeneity of small-cell lung cancer becomes increasingly elaborate in the liver, a common metastatic site for the disease.<i>See related articles by Singh and colleagues, p. 1840 and Sutcliffe and colleagues, p. 1868</i>.
Medical subject headings
- Lung Neoplasms
- Small Cell Lung Carcinoma