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Extrachromosomal DNA Amplification Contributes to Small Cell Lung Cancer Heterogeneity and Is Associated with Worse Outcomes.


ABSTRACT: Small-cell lung cancer (SCLC) is an aggressive neuroendocrine lung cancer. Oncogenic MYC amplifications drive SCLC heterogeneity, but the genetic mechanisms of MYC amplification and phenotypic plasticity, characterized by neuroendocrine and nonneuroendocrine cell states, are not known. Here, we integrate whole-genome sequencing, long-range optical mapping, single-cell DNA sequencing, and fluorescence in situ hybridization to find extrachromosomal DNA (ecDNA) as a primary source of SCLC oncogene amplifications and driver fusions. ecDNAs bring to proximity enhancer elements and oncogenes, creating SCLC transcription-amplifying units, driving exceptionally high MYC gene dosage. We demonstrate that cell-free nucleosome profiling can noninvasively detect ecDNA amplifications in plasma, facilitating its genome-wide interrogation in SCLC and other cancers. Altogether, our work provides the first comprehensive map of SCLC ecDNA and describes a new mechanism that governs MYC-driven SCLC heterogeneity. ecDNA-enabled transcriptional flexibility may explain the significantly worse survival outcomes of SCLC harboring complex ecDNA amplifications.

Significance

MYC drives SCLC progression, but the genetic basis of MYC-driven SCLC evolution is unknown. Using SCLC as a paradigm, we report how ecDNA amplifications function as MYC-amplifying units, fostering tumor plasticity and a high degree of tumor heterogeneity. This article is highlighted in the In This Issue feature, p. 799.

SUBMITTER: Pongor LS 

PROVIDER: S-EPMC10073312 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Extrachromosomal DNA Amplification Contributes to Small Cell Lung Cancer Heterogeneity and Is Associated with Worse Outcomes.

Pongor Lőrinc Sándor LS   Schultz Christopher W CW   Rinaldi Lorenzo L   Wangsa Darawalee D   Redon Christophe E CE   Takahashi Nobuyuki N   Fialkoff Gavriel G   Desai Parth P   Zhang Yang Y   Burkett Sandra S   Hermoni Nadav N   Vilk Noa N   Gutin Jenia J   Gergely Rona R   Zhao Yongmei Y   Nichols Samantha S   Vilimas Rasa R   Sciuto Linda L   Graham Chante C   Caravaca Juan Manuel JM   Turan Sevilay S   Tsai-Wei Shen S   Rajapakse Vinodh N VN   Kumar Rajesh R   Upadhyay Deep D   Kumar Suresh S   Kim Yoo Sun YS   Roper Nitin N   Tran Bao B   Hewitt Stephen M SM   Kleiner David E DE   Aladjem Mirit I MI   Friedman Nir N   Hager Gordon L GL   Pommier Yves Y   Ried Thomas T   Thomas Anish A  

Cancer discovery 20230401 4


Small-cell lung cancer (SCLC) is an aggressive neuroendocrine lung cancer. Oncogenic MYC amplifications drive SCLC heterogeneity, but the genetic mechanisms of MYC amplification and phenotypic plasticity, characterized by neuroendocrine and nonneuroendocrine cell states, are not known. Here, we integrate whole-genome sequencing, long-range optical mapping, single-cell DNA sequencing, and fluorescence in situ hybridization to find extrachromosomal DNA (ecDNA) as a primary source of SCLC oncogene  ...[more]

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