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Van Allen, Eliezer

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Van Allen

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Eliezer

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Van Allen, Eliezer

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Now showing 1 - 7 of 7
  • Publication

    Assessing the clinical utility of cancer genomic and proteomic data across tumor types

    (2014) Yuan, Yuan; Van Allen, Eliezer; Omberg, Larsson; Wagle, Nikhil; Amin-Mansour, Ali; Sokolov, Artem; Byers, Lauren A.; Xu, Yanxun; Hess, Kenneth R.; Diao, Lixia; Han, Leng; Huang, Xuelin; Lawrence, Michael S.; Weinstein, John N.; Stuart, Josh M.; Mills, Gordon B.; Garraway, Levi; Margolin, Adam A.; Getz, Gad; Liang, Han

    Molecular profiling of tumors promises to advance the clinical management of cancer, but the benefits of integrating molecular data with traditional clinical variables have not been systematically studied. Here we retrospectively predict patient survival using diverse molecular data (somatic copy-number alteration, DNA methylation and mRNA, miRNA and protein expression) from 953 samples of four cancer types from The Cancer Genome Atlas project. We found that incorporating molecular data with clinical variables yielded statistically significantly improved predictions (FDR < 0.05) for three cancers but those quantitative gains were limited (2.2–23.9%). Additional analyses revealed little predictive power across tumor types except for one case. In clinically relevant genes, we identified 10,281 somatic alterations across 12 cancer types in 2,928 of 3,277 patients (89.4%), many of which would not be revealed in single-tumor analyses. Our study provides a starting point and resources, including an open-access model evaluation platform, for building reliable prognostic and therapeutic strategies that incorporate molecular data.

  • Publication

    Whole exome sequencing of circulating tumor cells provides a window into metastatic prostate cancer

    (2014) Lohr, Jens; Adalsteinsson, Viktor A.; Cibulskis, Kristian; Choudhury, Atish; Rosenberg, Mara; Cruz-Gordillo, Peter; Francis, Joshua; Zhang, Cheng-Zhong; Shalek, Alex K.; Satija, Rahul; Trombetta, John T.; Lu, Diana; Tallapragada, Naren; Tahirova, Narmin; Kim, Sora; Blumenstiel, Brendan; Sougnez, Carrie; Lowe, Alarice; Wong, Bang; Auclair, Daniel; Van Allen, Eliezer; Nakabayashi, Mari; Lis, Rosina T.; Lee, Gwo-Shu M.; Li, Tiantian; Chabot, Matthew S.; Ly, Amy; Taplin, Mary-Ellen; Clancy, Thomas; Loda, Massimo; Regev, Aviv; Meyerson, Matthew; Hahn, William; Kantoff, Philip; Golub, Todd; Getz, Gad; Boehm, Jesse S.; Love, J. Christopher

    Comprehensive analyses of cancer genomes promise to inform prognoses and precise cancer treatments. A major barrier, however, is inaccessibility of metastatic tissue. A potential solution is to characterize circulating tumor cells (CTCs), but this requires overcoming the challenges of isolating rare cells and sequencing low-input material. Here we report an integrated process to isolate, qualify and sequence whole exomes of CTCs with high fidelity, using a census-based sequencing strategy. Power calculations suggest that mapping of >99.995% of the standard exome is possible in CTCs. We validated our process in two prostate cancer patients including one for whom we sequenced CTCs, a lymph node metastasis and nine cores of the primary tumor. Fifty-one of 73 CTC mutations (70%) were observed in matched tissue. Moreover, we identified 10 early-trunk and 56 metastatic-trunk mutations in the non-CTC tumor samples and found 90% and 73% of these, respectively, in CTC exomes. This study establishes a foundation for CTC genomics in the clinic.

  • Publication

    Long-term Benefit of PD-L1 Blockade in Lung Cancer Associated with JAK3 Activation

    (American Association for Cancer Research (AACR), 2015) Van Allen, Eliezer; Golay, H. G.; Liu, Yan; Koyama, S.; Wong, Kwok-Kin; Taylor-Weiner, Amaro; Giannakis, Marios; Harden, M.; Rojas-Rudilla, V.; Chevalier, A.; Thai, T.; Lydon, C.; Mach, S.; Wong, J. A.; Rabin, A. R.; Helmkamp, J.; Sholl, Lynette; Carter, Scott; Oxnard, Geoffrey; Janne, Pasi; Getz, Gad; Lindeman, Neal; Hammerman, Peter S.; Garraway, Levi; Hodi, Frank; Rodig, Scott; Dranoff, Glenn; Barbie, David

    PD-1 immune checkpoint blockade occasionally results in durable clinical responses in advanced metastatic cancers. However, mechanism-based predictors of response to this immunotherapy remain incompletely characterized. We performed comprehensive genomic profiling on a tumor and germline sample from a patient with refractory lung adenocarcinoma who achieved marked long-term clinical benefit from anti-PD-L1 therapy. We discovered activating somatic and germline amino acid variants in JAK3 that promoted PD-L1 induction in lung cancer cells and in the tumor immune microenvironment. These findings suggest that genomic alterations that deregulate cytokine receptor signal transduction could contribute to PD-L1 activation and engagement of the PD-1 immune checkpoint in lung cancer.

  • Publication

    Somatic ERCC2 Mutations Are Associated with a Distinct Genomic Signature in Urothelial Tumors

    (2016) Kim, Jaegil; Mouw, Kent; Polak, Paz; Braunstein, Lior Z; Kamburov, Atanas; Kwiatkowski, David; Rosenberg, Jonathan E; Van Allen, Eliezer; D'Andrea, Alan; Getz, Gad

    Alterations in DNA repair pathways are common in tumors and can result in characteristic mutational signatures; however, a specific mutational signature associated with somatic alterations in the nucleotide excision repair (NER) pathway has not yet been identified. Here, we examine the mutational processes operating in urothelial cancer, a tumor type in which the core NER gene ERCC2 is significantly mutated. Analysis of three independent urothelial tumor cohorts reveals a strong association between somatic ERCC2 mutations and activity of a mutational signature characterized by a broad spectrum of base changes. In addition, we note an association between activity of this signature and smoking that is independent of ERCC2 mutation status, providing genomic evidence of tobacco-related mutagenesis in urothelial cancer. Together, these analyses identify the first NER-related mutational signature and highlight the related roles of DNA damage and subsequent DNA repair in shaping the tumor mutational landscape.

  • Publication

    Systematic genomic and translational efficiency studies of uveal melanoma

    (Public Library of Science, 2017) Johnson, Chelsea Place; Kim, Ivana; Esmaeli, Bita; Amin-Mansour, Ali; Treacy, Daniel J.; Carter, Scott; Hodis, Eran; Wagle, Nikhil; Seepo, Sara; Yu, Xiaoxing; Lane, Anne Marie; Gragoudas, Evangelos; Vazquez, Francisca; Nickerson, Elizabeth; Cibulskis, Kristian; McKenna, Aaron; Gabriel, Stacey B.; Getz, Gad; Van Allen, Eliezer; ‘t Hoen, Peter A. C.; Garraway, Levi; Woodman, Scott E.

    To further our understanding of the somatic genetic basis of uveal melanoma, we sequenced the protein-coding regions of 52 primary tumors and 3 liver metastases together with paired normal DNA. Known recurrent mutations were identified in GNAQ, GNA11, BAP1, EIF1AX, and SF3B1. The role of mutated EIF1AX was tested using loss of function approaches including viability and translational efficiency assays. Knockdown of both wild type and mutant EIF1AX was lethal to uveal melanoma cells. We probed the function of N-terminal tail EIF1AX mutations by performing RNA sequencing of polysome-associated transcripts in cells expressing endogenous wild type or mutant EIF1AX. Ribosome occupancy of the global translational apparatus was sensitive to suppression of wild type but not mutant EIF1AX. Together, these studies suggest that cells expressing mutant EIF1AX may exhibit aberrant translational regulation, which may provide clonal selective advantage in the subset of uveal melanoma that harbors this mutation.

  • Publication

    Scalable whole-exome sequencing of cell-free DNA reveals high concordance with metastatic tumors

    (Nature Publishing Group UK, 2017) Adalsteinsson, Viktor A.; Ha, Gavin; Freeman, Sam; Choudhury, Atish D.; Stover, Daniel G.; Parsons, Heather; Gydush, Gregory; Reed, Sarah C.; Rotem, Denisse; Rhoades, Justin; Loginov, Denis; Livitz, Dimitri; Rosebrock, Daniel; Leshchiner, Ignaty; Kim, Jaegil; Stewart, Chip; Rosenberg, Mara; Francis, Joshua M.; Zhang, Cheng-Zhong; Cohen, Ofir; Oh, Coyin; Ding, Huiming; Polak, Paz; Lloyd, Max; Mahmud, Sairah; Helvie, Karla; Merrill, Margaret S.; Santiago, Rebecca A.; O’Connor, Edward P.; Jeong, Seong H.; Leeson, Rachel; Barry, Rachel M.; Kramkowski, Joseph F.; Zhang, Zhenwei; Polacek, Laura; Lohr, Jens; Schleicher, Molly; Lipscomb, Emily; Saltzman, Andrea; Oliver, Nelly M.; Marini, Lori; Waks, Adrienne; Harshman, Lauren C.; Tolaney, Sara M.; Van Allen, Eliezer; Winer, Eric P.; Lin, Nancy U.; Nakabayashi, Mari; Taplin, Mary-Ellen; Johannessen, Cory M.; Garraway, Levi; Golub, Todd; Boehm, Jesse S.; Wagle, Nikhil; Getz, Gad; Love, J. Christopher; Meyerson, Matthew

    Whole-exome sequencing of cell-free DNA (cfDNA) could enable comprehensive profiling of tumors from blood but the genome-wide concordance between cfDNA and tumor biopsies is uncertain. Here we report ichorCNA, software that quantifies tumor content in cfDNA from 0.1× coverage whole-genome sequencing data without prior knowledge of tumor mutations. We apply ichorCNA to 1439 blood samples from 520 patients with metastatic prostate or breast cancers. In the earliest tested sample for each patient, 34% of patients have ≥10% tumor-derived cfDNA, sufficient for standard coverage whole-exome sequencing. Using whole-exome sequencing, we validate the concordance of clonal somatic mutations (88%), copy number alterations (80%), mutational signatures, and neoantigens between cfDNA and matched tumor biopsies from 41 patients with ≥10% cfDNA tumor content. In summary, we provide methods to identify patients eligible for comprehensive cfDNA profiling, revealing its applicability to many patients, and demonstrate high concordance of cfDNA and metastatic tumor whole-exome sequencing.

  • Publication

    Mutational patterns in chemotherapy resistant muscle-invasive bladder cancer

    (Nature Publishing Group UK, 2017) Liu, David; Abbosh, Philip; Keliher, Daniel; Reardon, Brendan; Miao, Diana; Mouw, Kent; Weiner-Taylor, Amaro; Wankowicz, Stephanie; Han, Garam; Teo, Min Yuen; Cipolla, Catharine; Kim, Jaegil; Iyer, Gopa; Al-Ahmadie, Hikmat; Dulaimi, Essel; Chen, David Y. T.; Alpaugh, R. Katherine; Hoffman-Censits, Jean; Garraway, Levi; Getz, Gad; Carter, Scott; Bellmunt, Joaquim; Plimack, Elizabeth R.; Rosenberg, Jonathan E.; Van Allen, Eliezer

    Despite continued widespread use, the genomic effects of cisplatin-based chemotherapy and implications for subsequent treatment are incompletely characterized. Here, we analyze whole exome sequencing of matched pre- and post-neoadjuvant cisplatin-based chemotherapy primary bladder tumor samples from 30 muscle-invasive bladder cancer patients. We observe no overall increase in tumor mutational burden post-chemotherapy, though a significant proportion of subclonal mutations are unique to the matched pre- or post-treatment tumor, suggesting chemotherapy-induced and/or spatial heterogeneity. We subsequently identify and validate a novel mutational signature in post-treatment tumors consistent with known characteristics of cisplatin damage and repair. We find that post-treatment tumor heterogeneity predicts worse overall survival, and further observe alterations in cell-cycle and immune checkpoint regulation genes in post-treatment tumors. These results provide insight into the clinical and genomic dynamics of tumor evolution with cisplatin-based chemotherapy, suggest mechanisms of clinical resistance, and inform development of clinically relevant biomarkers and trials of combination therapies.