STK11/LKB1 Mutations and PD-1 Inhibitor Resistance in KRAS-Mutant Lung Adenocarcinoma

克拉斯 癌症研究 腺癌 STK11段 无容量 封锁 生物 塞鲁美替尼 肺癌 突变体 癌症 内科学 医学 基因 肿瘤科 遗传学 免疫疗法 结直肠癌 受体
作者
Ferdinandos Skoulidis,Michael E. Goldberg,Danielle Greenawalt,Matthew D. Hellmann,Mark M. Awad,Justin F. Gainor,Alexa B. Schrock,Ryan J. Hartmaier,Sally E. Trabucco,Laurie M. Gay,Siraj M. Ali,Julia A. Elvin,Gaurav Singal,Jeffrey S. Ross,David Fabrizio,Péter M. Szabó,Chang Han,Ariella Sasson,Sujaya Srinivasan,Stefan Kirov,Joseph D. Szustakowski,Patrik Vitazka,Robin Edwards,José A. Bufill,Neelesh Sharma,Sai‐Hong Ignatius Ou,Nir Peled,David R. Spigel,Hira Rizvi,Elizabeth Jiménez Aguilar,Brett W. Carter,Jeremy Erasmus,Darragh Halpenny,Andrew J. Plodkowski,Niamh M. Long,Mizuki Nishino,Warren L. Denning,Ana Galan Cobo,Haïfa Hamdi,Taghreed Hirz,Pan Tong,Jing Wang,Jaime Rodriguez‐Canales,Pamela Villalobos,Edwin R. Parra,Neda Kalhor,Lynette M. Sholl,Jennifer L. Sauter,Achim A. Jungbluth,Mari Mino‐Kenudson,Roxana Azimi,Yasir Y. Elamin,Jianjun Zhang,Giulia C. Leonardi,Fei Jiang,Kwok‐Kin Wong,J. Jack Lee,Vassiliki A. Papadimitrakopoulou,Ignacio I. Wistuba,Vincent A. Miller,Garrett M. Frampton,Jedd D. Wolchok,Alice T. Shaw,Pasi A. Jänne,Philip J. Stephens,Charles M. Rudin,William J. Geese,Lee A. Albacker,John V. Heymach
出处
期刊:Cancer Discovery [American Association for Cancer Research]
卷期号:8 (7): 822-835 被引量:1211
标识
DOI:10.1158/2159-8290.cd-18-0099
摘要

Abstract KRAS is the most common oncogenic driver in lung adenocarcinoma (LUAC). We previously reported that STK11/LKB1 (KL) or TP53 (KP) comutations define distinct subgroups of KRAS-mutant LUAC. Here, we examine the efficacy of PD-1 inhibitors in these subgroups. Objective response rates to PD-1 blockade differed significantly among KL (7.4%), KP (35.7%), and K-only (28.6%) subgroups (P < 0.001) in the Stand Up To Cancer (SU2C) cohort (174 patients) with KRAS-mutant LUAC and in patients treated with nivolumab in the CheckMate-057 phase III trial (0% vs. 57.1% vs. 18.2%; P = 0.047). In the SU2C cohort, KL LUAC exhibited shorter progression-free (P < 0.001) and overall (P = 0.0015) survival compared with KRASMUT;STK11/LKB1WT LUAC. Among 924 LUACs, STK11/LKB1 alterations were the only marker significantly associated with PD-L1 negativity in TMBIntermediate/High LUAC. The impact of STK11/LKB1 alterations on clinical outcomes with PD-1/PD-L1 inhibitors extended to PD-L1–positive non–small cell lung cancer. In Kras-mutant murine LUAC models, Stk11/Lkb1 loss promoted PD-1/PD-L1 inhibitor resistance, suggesting a causal role. Our results identify STK11/LKB1 alterations as a major driver of primary resistance to PD-1 blockade in KRAS-mutant LUAC. Significance: This work identifies STK11/LKB1 alterations as the most prevalent genomic driver of primary resistance to PD-1 axis inhibitors in KRAS-mutant lung adenocarcinoma. Genomic profiling may enhance the predictive utility of PD-L1 expression and tumor mutation burden and facilitate establishment of personalized combination immunotherapy approaches for genomically defined LUAC subsets. Cancer Discov; 8(7); 822–35. ©2018 AACR. See related commentary by Etxeberria et al., p. 794. This article is highlighted in the In This Issue feature, p. 781
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