Clonal History and Genetic Predictors of Transformation Into Small-Cell Carcinomas From Lung Adenocarcinomas

Jake June-Koo Lee(Kim's Eye Hospital), Junehawk Lee(Kim's Eye Hospital), Sehui Kim(Kim's Eye Hospital), Soyeon Kim(Kim's Eye Hospital), Jeonghwan Youk(Kim's Eye Hospital), Seongyeol Park(Kim's Eye Hospital), Yohan An(Kim's Eye Hospital), Bhumsuk Keam(Kim's Eye Hospital), Dong‐Wan Kim(Kim's Eye Hospital), Dae Seog Heo(Kim's Eye Hospital), Young Tae Kim(Kim's Eye Hospital), Jin-Soo Kim(Kim's Eye Hospital), Se Hyun Kim(Kim's Eye Hospital), Jong Seok Lee(Kim's Eye Hospital), Se‐Hoon Lee(Kim's Eye Hospital), Keunchil Park(Kim's Eye Hospital), Ja‐Lok Ku(Kim's Eye Hospital), Yoon Kyung Jeon(Kim's Eye Hospital), Doo Hyun Chung(Kim's Eye Hospital), Peter J. Park(Kim's Eye Hospital), Joon Kim(Kim's Eye Hospital), Tae‐Min Kim(Kim's Eye Hospital), Young Seok Ju(Kim's Eye Hospital)
Journal of Clinical Oncology
May 12, 2017
Cited by 508

Abstract

Purpose Histologic transformation of EGFR mutant lung adenocarcinoma (LADC) into small-cell lung cancer (SCLC) has been described as one of the major resistant mechanisms for epidermal growth factor receptor (EGFR) tyrosine kinase inhibitors (TKIs). However, the molecular pathogenesis is still unclear. Methods We investigated 21 patients with advanced EGFR-mutant LADCs that were transformed into EGFR TKI-resistant SCLCs. Among them, whole genome sequencing was applied for nine tumors acquired at various time points from four patients to reconstruct their clonal evolutionary history and to detect genetic predictors for small-cell transformation. The findings were validated by immunohistochemistry in 210 lung cancer tissues. Results We identified that EGFR TKI-resistant LADCs and SCLCs share a common clonal origin and undergo branched evolutionary trajectories. The clonal divergence of SCLC ancestors from the LADC cells occurred before the first EGFR TKI treatments, and the complete inactivation of both RB1 and TP53 were observed from the early LADC stages in sequenced tumors. We extended the findings by immunohistochemistry in the early-stage LADC tissues of 75 patients treated with EGFR TKIs; inactivation of both Rb and p53 was strikingly more frequent in the small-cell-transformed group than in the nontransformed group (82% v 3%; odds ratio, 131; 95% CI, 19.9 to 859). Among patients registered in a predefined cohort (n = 65), an EGFR mutant LADC that harbored completely inactivated Rb and p53 had a 43× greater risk of small-cell transformation (relative risk, 42.8; 95% CI, 5.88 to 311). Branch-specific mutational signature analysis revealed that apolipoprotein B mRNA editing enzyme, catalytic polypeptide-like (APOBEC)-induced hypermutation was frequent in the branches toward small-cell transformation. Conclusion EGFR TKI-resistant SCLCs are branched out early from the LADC clones that harbor completely inactivated RB1 and TP53. The evaluation of RB1 and TP53 status in EGFR TKI-treated LADCs is informative in predicting small-cell transformation.


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