Transcriptional Circuitry of NKX2-1 and SOX1 Defines an Unrecognized Lineage Subtype of Small-Cell Lung Cancer

The current molecular classification of small-cell lung cancer (SCLC) on the basis of the expression of four lineage transcription factors still leaves its major subtype SCLC-A as a heterogeneous group, necessitating more precise characterization of lineage subclasses. To refine the current SCLC cla...

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Veröffentlicht in:American journal of respiratory and critical care medicine 2022-12, Vol.206 (12), p.1480-1494
Hauptverfasser: Kong, Ranran, Patel, Ayushi S, Sato, Takashi, Jiang, Feng, Yoo, Seungyeul, Bao, Li, Sinha, Abhilasha, Tian, Yang, Fridrikh, Maya, Liu, Shuhui, Feng, Jie, He, Xijing, Jiang, Jiantao, Ma, Yuefeng, Grullon, Karina, Yang, Dawei, Powell, Charles A, Beasley, Mary Beth, Zhu, Jun, Snyder, Eric L, Li, Shaomin, Watanabe, Hideo
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Sprache:eng
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Zusammenfassung:The current molecular classification of small-cell lung cancer (SCLC) on the basis of the expression of four lineage transcription factors still leaves its major subtype SCLC-A as a heterogeneous group, necessitating more precise characterization of lineage subclasses. To refine the current SCLC classification with epigenomic profiles and to identify features of the redefined SCLC subtypes. We performed unsupervised clustering of epigenomic profiles on 25 SCLC cell lines. Functional significance of NKX2-1 (NK2 homeobox 1) was evaluated by cell growth, apoptosis, and xenograft using clustered regularly interspaced short palindromic repeats-Cas9 (CRISPR-associated protein 9)-mediated deletion. NKX2-1-specific cistromic profiles were determined using chromatin immunoprecipitation followed by sequencing, and its functional transcriptional partners were determined using coimmunoprecipitation followed by mass spectrometry. and mouse models were engineered to explore the function of in SCLC tumorigenesis. Epigenomic landscapes of six human SCLC specimens and 20 tumors from two mouse models were characterized. We identified two epigenomic subclusters of the major SCLC-A subtype: SCLC-Aα and SCLC-Aσ. SCLC-Aα was characterized by the presence of a super-enhancer at the locus, which was observed in human SCLC specimens and a murine SCLC model. We found that NKX2-1, a dual lung and neural lineage factor, is uniquely relevant in SCLC-Aα. In addition, we found that maintenance of this neural identity in SCLC-Aα is mediated by collaborative transcriptional activity with another neuronal transcriptional factor, SOX1 (SRY-box transcription factor 1). We comprehensively describe additional epigenomic heterogeneity of the major SCLC-A subtype and define the SCLC-Aα subtype by the core regulatory circuitry of NKX2-1 and SOX1 super-enhancers and their functional collaborations to maintain neuronal linage state.
ISSN:1073-449X
1535-4970
1535-4970
DOI:10.1164/rccm.202110-2358OC