CTLA4 blockade abrogates KEAP1/STK11-related resistance to PD-(L)1 inhibitors

IF 50.5 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Nature Pub Date : 2024-10-09 DOI:10.1038/s41586-024-07943-7
Ferdinandos Skoulidis, Haniel A. Araujo, Minh Truong Do, Yu Qian, Xin Sun, Ana Galan Cobo, John T. Le, Meagan Montesion, Rachael Palmer, Nadine Jahchan, Joseph M. Juan, Chengyin Min, Yi Yu, Xuewen Pan, Kathryn C. Arbour, Natalie Vokes, Stephanie T. Schmidt, David Molkentine, Dwight H. Owen, Regan Memmott, Pradnya D. Patil, Melina E. Marmarelis, Mark M. Awad, Joseph C. Murray, Jessica A. Hellyer, Justin F. Gainor, Anastasios Dimou, Christine M. Bestvina, Catherine A. Shu, Jonathan W. Riess, Collin M. Blakely, Chad V. Pecot, Laura Mezquita, Fabrizio Tabbó, Matthias Scheffler, Subba Digumarthy, Meghan J. Mooradian, Adrian G. Sacher, Sally C. M. Lau, Andreas N. Saltos, Julia Rotow, Rocio Perez Johnson, Corinne Liu, Tyler Stewart, Sarah B. Goldberg, Jonathan Killam, Zenta Walther, Kurt Schalper, Kurtis D. Davies, Mark G. Woodcock, Valsamo Anagnostou, Kristen A. Marrone, Patrick M. Forde, Biagio Ricciuti, Deepti Venkatraman, Eliezer M. Van Allen, Amy L. Cummings, Jonathan W. Goldman, Hiram Shaish, Melanie Kier, Sharyn Katz, Charu Aggarwal, Ying Ni, Joseph T. Azok, Jeremy Segal, Lauren Ritterhouse, Joel W. Neal, Ludovic Lacroix, Yasir Y. Elamin, Marcelo V. Negrao, Xiuning Le, Vincent K. Lam, Whitney E. Lewis, Haley N. Kemp, Brett Carter, Jack A. Roth, Stephen Swisher, Richard Lee, Teng Zhou, Alissa Poteete, Yifan Kong, Tomohiro Takehara, Alvaro Guimaraes Paula, Edwin R. Parra Cuentas, Carmen Behrens, Ignacio I. Wistuba, Jianjun Zhang, George R. Blumenschein, Carl Gay, Lauren A. Byers, Don L. Gibbons, Anne Tsao, J. Jack Lee, Trever G. Bivona, D. Ross Camidge, Jhannelle E. Gray, Natasha Lieghl, Benjamin Levy, Julie R. Brahmer, Marina C. Garassino, David R. Gandara, Edward B. Garon, Naiyer A. Rizvi, Giorgio Vittorio Scagliotti, Jürgen Wolf, David Planchard, Benjamin Besse, Roy S. Herbst, Heather A. Wakelee, Nathan A. Pennell, Alice T. Shaw, Pasi A. Jänne, David P. Carbone, Matthew D. Hellmann, Charles M. Rudin, Lee Albacker, Helen Mann, Zhou Zhu, Zhongwu Lai, Ross Stewart, Solange Peters, Melissa L. Johnson, Kwok K. Wong, Alan Huang, Monte M. Winslow, Michael J. Rosen, Ian P. Winters, Vassiliki A. Papadimitrakopoulou, Tina Cascone, Philip Jewsbury, John V. Heymach
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Forde, Biagio Ricciuti, Deepti Venkatraman, Eliezer M. Van Allen, Amy L. Cummings, Jonathan W. Goldman, Hiram Shaish, Melanie Kier, Sharyn Katz, Charu Aggarwal, Ying Ni, Joseph T. Azok, Jeremy Segal, Lauren Ritterhouse, Joel W. Neal, Ludovic Lacroix, Yasir Y. Elamin, Marcelo V. Negrao, Xiuning Le, Vincent K. Lam, Whitney E. Lewis, Haley N. Kemp, Brett Carter, Jack A. Roth, Stephen Swisher, Richard Lee, Teng Zhou, Alissa Poteete, Yifan Kong, Tomohiro Takehara, Alvaro Guimaraes Paula, Edwin R. Parra Cuentas, Carmen Behrens, Ignacio I. Wistuba, Jianjun Zhang, George R. Blumenschein, Carl Gay, Lauren A. Byers, Don L. Gibbons, Anne Tsao, J. Jack Lee, Trever G. Bivona, D. Ross Camidge, Jhannelle E. Gray, Natasha Lieghl, Benjamin Levy, Julie R. Brahmer, Marina C. Garassino, David R. Gandara, Edward B. Garon, Naiyer A. Rizvi, Giorgio Vittorio Scagliotti, Jürgen Wolf, David Planchard, Benjamin Besse, Roy S. Herbst, Heather A. Wakelee, Nathan A. Pennell, Alice T. Shaw, Pasi A. Jänne, David P. Carbone, Matthew D. Hellmann, Charles M. Rudin, Lee Albacker, Helen Mann, Zhou Zhu, Zhongwu Lai, Ross Stewart, Solange Peters, Melissa L. Johnson, Kwok K. Wong, Alan Huang, Monte M. Winslow, Michael J. Rosen, Ian P. Winters, Vassiliki A. Papadimitrakopoulou, Tina Cascone, Philip Jewsbury, John V. Heymach","doi":"10.1038/s41586-024-07943-7","DOIUrl":null,"url":null,"abstract":"For patients with advanced non-small-cell lung cancer (NSCLC), dual immune checkpoint blockade (ICB) with CTLA4 inhibitors and PD-1 or PD-L1 inhibitors (hereafter, PD-(L)1 inhibitors) is associated with higher rates of anti-tumour activity and immune-related toxicities, when compared with treatment with PD-(L)1 inhibitors alone. However, there are currently no validated biomarkers to identify which patients will benefit from dual ICB1,2. Here we show that patients with NSCLC who have mutations in the STK11 and/or KEAP1 tumour suppressor genes derived clinical benefit from dual ICB with the PD-L1 inhibitor durvalumab and the CTLA4 inhibitor tremelimumab, but not from durvalumab alone, when added to chemotherapy in the randomized phase III POSEIDON trial3. Unbiased genetic screens identified loss of both of these tumour suppressor genes as independent drivers of resistance to PD-(L)1 inhibition, and showed that loss of Keap1 was the strongest genomic predictor of dual ICB efficacy—a finding that was confirmed in several mouse models of Kras-driven NSCLC. In both mouse models and patients, KEAP1 and STK11 alterations were associated with an adverse tumour microenvironment, which was characterized by a preponderance of suppressive myeloid cells and the depletion of CD8+ cytotoxic T cells, but relative sparing of CD4+ effector subsets. Dual ICB potently engaged CD4+ effector cells and reprogrammed the tumour myeloid cell compartment towards inducible nitric oxide synthase (iNOS)-expressing tumoricidal phenotypes that—together with CD4+ and CD8+ T cells—contributed to anti-tumour efficacy. These data support the use of chemo-immunotherapy with dual ICB to mitigate resistance to PD-(L)1 inhibition in patients with NSCLC who have STK11 and/or KEAP1 alterations. Alterations in the tumour suppressor genes STK11 and/or KEAP1 can identify patients with advanced non-small-cell lung cancer who are likely to benefit from combinations of PD-(L)1 and CTLA4 immune checkpoint inhibitors added to chemotherapy.","PeriodicalId":18787,"journal":{"name":"Nature","volume":"635 8038","pages":"462-471"},"PeriodicalIF":50.5000,"publicationDate":"2024-10-09","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.nature.com/articles/s41586-024-07943-7.pdf","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Nature","FirstCategoryId":"103","ListUrlMain":"https://www.nature.com/articles/s41586-024-07943-7","RegionNum":1,"RegionCategory":"综合性期刊","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"MULTIDISCIPLINARY SCIENCES","Score":null,"Total":0}
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Abstract

For patients with advanced non-small-cell lung cancer (NSCLC), dual immune checkpoint blockade (ICB) with CTLA4 inhibitors and PD-1 or PD-L1 inhibitors (hereafter, PD-(L)1 inhibitors) is associated with higher rates of anti-tumour activity and immune-related toxicities, when compared with treatment with PD-(L)1 inhibitors alone. However, there are currently no validated biomarkers to identify which patients will benefit from dual ICB1,2. Here we show that patients with NSCLC who have mutations in the STK11 and/or KEAP1 tumour suppressor genes derived clinical benefit from dual ICB with the PD-L1 inhibitor durvalumab and the CTLA4 inhibitor tremelimumab, but not from durvalumab alone, when added to chemotherapy in the randomized phase III POSEIDON trial3. Unbiased genetic screens identified loss of both of these tumour suppressor genes as independent drivers of resistance to PD-(L)1 inhibition, and showed that loss of Keap1 was the strongest genomic predictor of dual ICB efficacy—a finding that was confirmed in several mouse models of Kras-driven NSCLC. In both mouse models and patients, KEAP1 and STK11 alterations were associated with an adverse tumour microenvironment, which was characterized by a preponderance of suppressive myeloid cells and the depletion of CD8+ cytotoxic T cells, but relative sparing of CD4+ effector subsets. Dual ICB potently engaged CD4+ effector cells and reprogrammed the tumour myeloid cell compartment towards inducible nitric oxide synthase (iNOS)-expressing tumoricidal phenotypes that—together with CD4+ and CD8+ T cells—contributed to anti-tumour efficacy. These data support the use of chemo-immunotherapy with dual ICB to mitigate resistance to PD-(L)1 inhibition in patients with NSCLC who have STK11 and/or KEAP1 alterations. Alterations in the tumour suppressor genes STK11 and/or KEAP1 can identify patients with advanced non-small-cell lung cancer who are likely to benefit from combinations of PD-(L)1 and CTLA4 immune checkpoint inhibitors added to chemotherapy.

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CTLA4阻断可消减KEAP1/STK11对PD-(L)1抑制剂的相关耐药性。
对于晚期非小细胞肺癌(NSCLC)患者,与单独使用 PD-(L)1 抑制剂相比,使用 CTLA4 抑制剂和 PD-1 或 PD-L1 抑制剂(以下简称 PD-(L)1 抑制剂)的双重免疫检查点阻断疗法(ICB)具有更高的抗肿瘤活性和免疫相关毒性。然而,目前还没有有效的生物标志物来确定哪些患者将从双重 ICB 中获益1,2。我们在此表明,在随机III期POSEIDON试验中,STK11和/或KEAP1抑癌基因发生突变的NSCLC患者在化疗的基础上加用PD-L1抑制剂durvalumab和CTLA4抑制剂tremelimumab的双ICB治疗,可获得临床获益,而单用durvalumab则无法获益3。无偏见的基因筛选发现,这两个肿瘤抑制基因的缺失是PD-(L)1抑制耐药的独立驱动因素,并表明Keap1的缺失是双ICB疗效的最强基因组预测因子--这一发现在几种Kras驱动的NSCLC小鼠模型中得到了证实。在小鼠模型和患者中,KEAP1和STK11的改变都与不利的肿瘤微环境有关,其特点是抑制性髓系细胞占优势,CD8+细胞毒性T细胞耗竭,但CD4+效应亚群相对稀少。双 ICB 能有效激活 CD4+ 效应细胞,并将肿瘤髓系细胞重新编程为表达诱导型一氧化氮合酶(iNOS)的杀瘤表型,这些表型与 CD4+ 和 CD8+ T 细胞一起提高了抗肿瘤疗效。这些数据支持在STK11和/或KEAP1发生改变的NSCLC患者中使用双ICB化疗免疫疗法来减轻PD-(L)1抑制的耐药性。
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来源期刊
Nature
Nature 综合性期刊-综合性期刊
CiteScore
90.00
自引率
1.20%
发文量
3652
审稿时长
3 months
期刊介绍: Nature is a prestigious international journal that publishes peer-reviewed research in various scientific and technological fields. The selection of articles is based on criteria such as originality, importance, interdisciplinary relevance, timeliness, accessibility, elegance, and surprising conclusions. In addition to showcasing significant scientific advances, Nature delivers rapid, authoritative, insightful news, and interpretation of current and upcoming trends impacting science, scientists, and the broader public. The journal serves a dual purpose: firstly, to promptly share noteworthy scientific advances and foster discussions among scientists, and secondly, to ensure the swift dissemination of scientific results globally, emphasizing their significance for knowledge, culture, and daily life.
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