Receptor Tyrosine Kinase Genes Amplified in Glioblastoma Exhibit a Mutual Exclusivity in Variable Proportions Reflective of Individual Tumor Heterogeneity

被引:93
作者
Little, Suzanne E. [1 ,2 ]
Popov, Sergey [1 ,2 ]
Jury, Alexa [1 ,2 ]
Bax, Dorine A. [1 ,2 ]
Doey, Lawrence [3 ]
Al-Sarraj, Safa [3 ]
Jurgensmeier, Juliane M. [4 ]
Jones, Chris [1 ,2 ]
机构
[1] Inst Canc Res, Div Mol Pathol, Sutton SM2 5NG, Surrey, England
[2] Inst Canc Res, Div Canc Therapeut, Sutton SM2 5NG, Surrey, England
[3] Kings Coll Hosp London, London, England
[4] AstraZeneca, Macclesfield, Cheshire, England
关键词
INTEGRATED GENOMIC ANALYSIS; CELL; AMPLIFICATION; EVOLUTION; EGFR;
D O I
10.1158/0008-5472.CAN-11-4069
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Intratumoral heterogeneity in human solid tumors represents a major barrier for the development of effective molecular treatment strategies, as treatment efficacies will reflect the molecular variegation in individual tumors. In glioblastoma, the generation of composite genomic profiles from bulk tumor samples has allowed one to map the genomic amplifications of putative genetic drivers and to prioritize therapeutic targeting strategies aimed at eradicating the tumor burden. Notably, amplification of multiple receptor tyrosine kinases (RTK) within a single tumor specimen obtained from patients is frequently observed. In this study, use of a detailed multicolor FISH mapping procedure in pathologic specimens revealed a mutual exclusivity of gene amplification in the majority of glioblastoma tumors examined. In particular, the two most commonly amplified RTK genes, EGFR and PDGFRA, were found to be present in variable proportions across the tumors, with one or the other gene predominating in certain areas of the same specimen. Our findings have profound implications for designing efficacious therapeutic regimens, as it remains unclear that how the cells with different gene amplification events contribute to disease propagation or the response to molecular targeted therapies. Cancer Res; 72(7); 1614-20. (C)2012 AACR.
引用
收藏
页码:1614 / 1620
页数:7
相关论文
共 20 条
[1]   Genetic variegation of clonal architecture and propagating cells in leukaemia [J].
Anderson, Kristina ;
Lutz, Christoph ;
van Delft, Frederik W. ;
Bateman, Caroline M. ;
Guo, Yanping ;
Colman, Susan M. ;
Kempski, Helena ;
Moorman, Anthony V. ;
Titley, Ian ;
Swansbury, John ;
Kearney, Lyndal ;
Enver, Tariq ;
Greaves, Mel .
NATURE, 2011, 469 (7330) :356-+
[2]   EGFRvIII Deletion Mutations in Pediatric High-Grade Glioma and Response to Targeted Therapy in Pediatric Glioma Cell Lines [J].
Bax, Dorine A. ;
Gaspar, Nathalie ;
Little, Suzanne E. ;
Marshall, Lynley ;
Perryman, Lara ;
Regairaz, Marie ;
Viana-Pereira, Marta ;
Vuononvirta, Raisa ;
Sharp, Swee Y. ;
Reis-Filho, Jorge S. ;
Stavale, Joao N. ;
Al-Sarraj, Safa ;
Reis, Rui M. ;
Vassal, Gilles ;
Pearson, Andrew D. J. ;
Hargrave, Darren ;
Ellison, David W. ;
Workman, Paul ;
Jones, Chris .
CLINICAL CANCER RESEARCH, 2009, 15 (18) :5753-5761
[3]   Vascular patterns in glioblastoma influence clinical outcome and associate with variable expression of angiogenic proteins:: Evidence for distinct angiogenic subtypes [J].
Birner, P ;
Piribauer, M ;
Fischer, I ;
Gatterbauer, B ;
Marosi, C ;
Ambros, PF ;
Ambros, IM ;
Bredel, M ;
Oberhuber, G ;
Rössler, K ;
Budka, H ;
Harris, AL ;
Hainfellner, JA .
BRAIN PATHOLOGY, 2003, 13 (02) :133-143
[4]   Small cell architecture - A histological equivalent of EGFR amplification in glioblastoma multiforme? [J].
Burger, PC ;
Pearl, DK ;
Aldape, K ;
Yates, AJ ;
Scheithauer, BW ;
Passe, SM ;
Jenkins, RB ;
James, CD .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2001, 60 (11) :1099-1104
[5]   Comprehensive genomic characterization defines human glioblastoma genes and core pathways [J].
Chin, L. ;
Meyerson, M. ;
Aldape, K. ;
Bigner, D. ;
Mikkelsen, T. ;
VandenBerg, S. ;
Kahn, A. ;
Penny, R. ;
Ferguson, M. L. ;
Gerhard, D. S. ;
Getz, G. ;
Brennan, C. ;
Taylor, B. S. ;
Winckler, W. ;
Park, P. ;
Ladanyi, M. ;
Hoadley, K. A. ;
Verhaak, R. G. W. ;
Hayes, D. N. ;
Spellman, Paul T. ;
Absher, D. ;
Weir, B. A. ;
Ding, L. ;
Wheeler, D. ;
Lawrence, M. S. ;
Cibulskis, K. ;
Mardis, E. ;
Zhang, Jinghui ;
Wilson, R. K. ;
Donehower, L. ;
Wheeler, D. A. ;
Purdom, E. ;
Wallis, J. ;
Laird, P. W. ;
Herman, J. G. ;
Schuebel, K. E. ;
Weisenberger, D. J. ;
Baylin, S. B. ;
Schultz, N. ;
Yao, Jun ;
Wiedemeyer, R. ;
Weinstein, J. ;
Sander, C. ;
Gibbs, R. A. ;
Gray, J. ;
Kucherlapati, R. ;
Lander, E. S. ;
Myers, R. M. ;
Perou, C. M. ;
McLendon, Roger .
NATURE, 2008, 455 (7216) :1061-1068
[6]  
Harada K, 1998, CANCER RES, V58, P4694
[7]   Correlation of O6-Methylguanine methyltransferase (MGMT) promoter methylation with clinical outcomes in glioblastoma and clinical strategies to modulate MGMT activity [J].
Hegi, Monika E. ;
Liu, Lili ;
Herman, James G. ;
Stupp, Roger ;
Wick, Wolfgang ;
Weller, Michael ;
Mehta, Minesh P. ;
Gilbert, Mark R. .
JOURNAL OF CLINICAL ONCOLOGY, 2008, 26 (25) :4189-4199
[8]   Evidence of focal genetic microheterogeneity in glioblastoma multiforme by area-specific CGH on microdissected tumor cells [J].
Jung, V ;
Romeike, BFM ;
Henn, W ;
Feiden, W ;
Moringlane, JR ;
Zang, KD ;
Urbschat, S .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 1999, 58 (09) :993-999
[9]   The 2007 WHO classification of tumours of the central nervous system (vol 114, pg 97, 2007) [J].
Louis, David N. ;
Ohgaki, Hiroko ;
Wiestler, Otmar D. ;
Cavenee, Webster K. ;
Burger, Peter C. ;
Jouvet, Anne ;
Scheithauer, Bernd W. ;
Kleihues, Paul .
ACTA NEUROPATHOLOGICA, 2007, 114 (05) :547-547
[10]   Tumor heterogeneity: Causes and consequences [J].
Marusyk, Andriy ;
Polyak, Kornelia .
BIOCHIMICA ET BIOPHYSICA ACTA-REVIEWS ON CANCER, 2010, 1805 (01) :105-117