Literature DB >> 25737507

Immunohistochemical Loss of LKB1 Is a Biomarker for More Aggressive Biology in KRAS-Mutant Lung Adenocarcinoma.

Antonio Calles1, Lynette M Sholl2, Scott J Rodig2, Ashley K Pelton2, Jason L Hornick2, Mohit Butaney1, Christine Lydon1, Suzanne E Dahlberg3, Geoffrey R Oxnard4, David M Jackman4, Pasi A Jänne5.   

Abstract

PURPOSE: LKB1 loss is common in lung cancer, but no assay exists to efficiently evaluate the presence or absence of LKB1. We validated an IHC assay for LKB1 loss and determined the impact of LKB1 loss in KRAS-mutant non-small cell lung cancer (NSCLC). EXPERIMENTAL
DESIGN: We optimized and validated an IHC assay for LKB1 (clone Ley37D/G6) using a panel of lung cancer cell lines and tumors with known LKB1 mutations, including 2 patients with Peutz-Jeghers syndrome (PJS) who developed lung adenocarcinoma. We retrospectively analyzed tumors for LKB1 using IHC from 154 KRAS-mutant NSCLC patients, including 123 smokers and 31 never-smokers, and correlated the findings with patient and tumor characteristics and clinical outcome.
RESULTS: LKB1 expression was lost by IHC in 30% of KRAS-mutant NSCLC (smokers 35% vs. never-smokers 13%, P = 0.017). LKB1 loss did not correlate with a specific KRAS mutation but was more frequent in tumors with KRAS transversion mutations (P = 0.029). KRAS-mutant NSCLC patients with concurrent LKB1 loss had a higher number of metastatic sites at the time of diagnosis (median 2.5 vs. 2, P = 0.01), higher incidence of extrathoracic metastases (P = 0.01), and developed brain metastasis more frequently (48% vs. 25%, P = 0.02). There was a nonsignificant trend to worse survival in stage IV KRAS-mutant NSCLC patients with LKB1 loss.
CONCLUSIONS: LKB1 IHC is a reliable and efficient assay to evaluate for loss of LKB1 in clinical samples of NSCLC. LKB1 loss is more common in smokers, and is associated with a more aggressive clinical phenotype in KRAS-mutant NSCLC patients, accordingly to preclinical models. ©2015 American Association for Cancer Research.

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Year:  2015        PMID: 25737507     DOI: 10.1158/1078-0432.CCR-14-3112

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  49 in total

Review 1.  Management of KRAS-Mutant Non-Small Cell Lung Cancer in the Era of Precision Medicine.

Authors:  Jacqueline V Aredo; Sukhmani K Padda
Journal:  Curr Treat Options Oncol       Date:  2018-06-27

2.  A Sensitive NanoString-Based Assay to Score STK11 (LKB1) Pathway Disruption in Lung Adenocarcinoma.

Authors:  Lu Chen; Brienne E Engel; Eric A Welsh; Sean J Yoder; Stephen G Brantley; Dung-Tsa Chen; Amer A Beg; Chunxia Cao; Frederic J Kaye; Eric B Haura; Matthew B Schabath; W Douglas Cress
Journal:  J Thorac Oncol       Date:  2016-02-23       Impact factor: 15.609

3.  Metabolic Diversity in Human Non-Small Cell Lung Cancer Cells.

Authors:  Pei-Hsuan Chen; Ling Cai; Kenneth Huffman; Chendong Yang; Jiyeon Kim; Brandon Faubert; Lindsey Boroughs; Bookyung Ko; Jessica Sudderth; Elizabeth A McMillan; Luc Girard; Dong Chen; Michael Peyton; Misty D Shields; Bo Yao; David S Shames; Hyun Seok Kim; Brenda Timmons; Ikuo Sekine; Rebecca Britt; Stephanie Weber; Lauren A Byers; John V Heymach; Jing Chen; Michael A White; John D Minna; Guanghua Xiao; Ralph J DeBerardinis
Journal:  Mol Cell       Date:  2019-09-26       Impact factor: 17.970

4.  LKB1/STK11 Expression in Lung Adenocarcinoma and Associations With Patterns of Recurrence.

Authors:  Kyle G Mitchell; Edwin R Parra; Jiexin Zhang; David B Nelson; Erin M Corsini; Pamela Villalobos; Cesar A Moran; Ferdinandos Skoulidis; Ignacio I Wistuba; Junya Fujimoto; Jack A Roth; Mara B Antonoff
Journal:  Ann Thorac Surg       Date:  2020-05-19       Impact factor: 4.330

Review 5.  RAS signaling and anti-RAS therapy: lessons learned from genetically engineered mouse models, human cancer cells, and patient-related studies.

Authors:  Bingliang Fang
Journal:  Acta Biochim Biophys Sin (Shanghai)       Date:  2015-09-07       Impact factor: 3.848

6.  Clinical and Molecular Characteristics of NF1-Mutant Lung Cancer.

Authors:  Amanda J Redig; Marzia Capelletti; Suzanne E Dahlberg; Lynette M Sholl; Stacy Mach; Caitlin Fontes; Yunling Shi; Poornima Chalasani; Pasi A Jänne
Journal:  Clin Cancer Res       Date:  2016-02-09       Impact factor: 12.531

7.  Next-Generation Sequencing of Pulmonary Large Cell Neuroendocrine Carcinoma Reveals Small Cell Carcinoma-like and Non-Small Cell Carcinoma-like Subsets.

Authors:  Natasha Rekhtman; Maria C Pietanza; Matthew D Hellmann; Jarushka Naidoo; Arshi Arora; Helen Won; Darragh F Halpenny; Hangjun Wang; Shaozhou K Tian; Anya M Litvak; Paul K Paik; Alexander E Drilon; Nicholas Socci; John T Poirier; Ronglai Shen; Michael F Berger; Andre L Moreira; William D Travis; Charles M Rudin; Marc Ladanyi
Journal:  Clin Cancer Res       Date:  2016-03-09       Impact factor: 12.531

8.  Synergy of radiotherapy and PD-1 blockade in Kras-mutant lung cancer.

Authors:  Grit S Herter-Sprie; Shohei Koyama; Houari Korideck; Josephine Hai; Jiehui Deng; Yvonne Y Li; Kevin A Buczkowski; Aaron K Grant; Soumya Ullas; Kevin Rhee; Jillian D Cavanaugh; Neermala Poudel Neupane; Camilla L Christensen; Jan M Herter; G Mike Makrigiorgos; F Stephen Hodi; Gordon J Freeman; Glenn Dranoff; Peter S Hammerman; Alec C Kimmelman; Kwok-Kin Wong
Journal:  JCI Insight       Date:  2016-06-16

9.  Differential control of Yorkie activity by LKB1/AMPK and the Hippo/Warts cascade in the central nervous system.

Authors:  Ieva Gailite; Birgit L Aerne; Nicolas Tapon
Journal:  Proc Natl Acad Sci U S A       Date:  2015-08-31       Impact factor: 11.205

10.  cAMP/CREB-regulated LINC00473 marks LKB1-inactivated lung cancer and mediates tumor growth.

Authors:  Zirong Chen; Jian-Liang Li; Shuibin Lin; Chunxia Cao; Nicholas T Gimbrone; Rongqiang Yang; Dongtao A Fu; Miranda B Carper; Eric B Haura; Matthew B Schabath; Jianrong Lu; Antonio L Amelio; W Douglas Cress; Frederic J Kaye; Lizi Wu
Journal:  J Clin Invest       Date:  2016-05-03       Impact factor: 14.808

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