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Published in: Investigational New Drugs 5/2013

01-10-2013 | PRECLINICAL STUDIES

Genotype-dependent cooperation of ionizing radiation with BRAF inhibition in BRAF V600E-mutated carcinomas

Authors: Tina Dasgupta, Daphne A. Haas-Kogan, Xiaodong Yang, Aleksandra Olow, Daniel X. Yang, Ashley Gragg, Lisa A. Orloff, Sue S. Yom

Published in: Investigational New Drugs | Issue 5/2013

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Summary

Background A substantial proportion of solid tumors carry the BRAF V600E mutation, which causes activation of the MEK/MAPK pathway and is a poor prognostic indicator. Patients with locally advanced human cancers are often treated with external beam radiation therapy. Given the association of Raf overactivation with radioresistance, we hypothesized that, in BRAF V600E-mutated carcinomas, there would be combinatorial activity between radiation and PLX4720, a specific BRAF V600E-inhibitor. Methods Two BRAF V600E-mutated cancer cell lines and one BRAF-V600E wildtype (WT) cancer cell line were obtained. We performed cell viability assays and clonogenic assays using combinations of radiation and PLX4720. We assessed MEK and MAPK phosphorylation at different PLX4720 concentrations with western blotting, and cell cycle progression was evaluated by flow cytometry. Results Our results show combinatorial, additive activity between radiation and PLX4720 in BRAF V600E-mutated cell lines, but not in the BRAF WT line. In BRAF V600E-mutated cells, there was a PLX4720 concentration-dependent decrease in MEK and MAPK phosphorylation. In cells with BRAF V600E mutations, PLX4720 caused cell cycle arrest at G1, and, when combined with radiation, caused a combined G1 and G2 cell cycle arrest; this pattern of cell cycle effects was not seen in the BRAF WT cell line. Conclusions These data suggest additive, combinatorial activity between radiation and PLX4720 in cancers carrying BRAF V600E mutations. Our data has potential for translation into the multimodality treatment of BRAF V600E-mutated cancers.
Literature
1.
go back to reference McCubrey JA, Steelman LS, Chappell WH, Abrams SL, Montalto G, Cervello M, Nicoletti F, Fagone P, Malaponte G, Mazzarino MC, Candido S, Libra M, Basecke J, Mijatovic S, Maksimovic-Ivanic D, Milella M, Tafuri A, Cocco L, Evangelisti C, Chiarini F, Martelli AM (2012) Mutations and Deregulation of Ras/Raf/MEK/ERK and PI3K/PTEN/Akt/mTOR Cascades. Oncotarget (9):954–87 McCubrey JA, Steelman LS, Chappell WH, Abrams SL, Montalto G, Cervello M, Nicoletti F, Fagone P, Malaponte G, Mazzarino MC, Candido S, Libra M, Basecke J, Mijatovic S, Maksimovic-Ivanic D, Milella M, Tafuri A, Cocco L, Evangelisti C, Chiarini F, Martelli AM (2012) Mutations and Deregulation of Ras/Raf/MEK/ERK and PI3K/PTEN/Akt/mTOR Cascades. Oncotarget (9):954–87
2.
go back to reference Gokhale PC, McRae D, Monia BP, Bagg A, Rahman A, Dritschilo A, Kasid U (1999) Antisense raf oligodeoxyribonucleotide is a radiosensitizer in vivo. Antisense Nucleic Acid Drug Dev 9(2):191–201CrossRef Gokhale PC, McRae D, Monia BP, Bagg A, Rahman A, Dritschilo A, Kasid U (1999) Antisense raf oligodeoxyribonucleotide is a radiosensitizer in vivo. Antisense Nucleic Acid Drug Dev 9(2):191–201CrossRef
4.
go back to reference Ricarte-Filho JC, Ryder M, Chitale DA, Rivera M, Heguy A, Ladanyi M, Janakiraman M, Solit D, Knauf JA, Tuttle RM, Ghossein RA, Fagin JA (2009) Mutational profile of advanced primary and metastatic radioactive iodine-refractory thyroid cancers reveals distinct pathogenetic roles for BRAF, PIK3CA, and AKT1. Cancer Res 69(11):4885–4893. doi:https://doi.org/10.1158/0008-5472.CAN-09-0727 CrossRef Ricarte-Filho JC, Ryder M, Chitale DA, Rivera M, Heguy A, Ladanyi M, Janakiraman M, Solit D, Knauf JA, Tuttle RM, Ghossein RA, Fagin JA (2009) Mutational profile of advanced primary and metastatic radioactive iodine-refractory thyroid cancers reveals distinct pathogenetic roles for BRAF, PIK3CA, and AKT1. Cancer Res 69(11):4885–4893. doi:https://​doi.​org/​10.​1158/​0008-5472.​CAN-09-0727 CrossRef
5.
go back to reference Schiffman JD, Hodgson JG, VandenBerg SR, Flaherty P, Polley MY, Yu M, Fisher PG, Rowitch DH, Ford JM, Berger MS, Ji H, Gutmann DH, James CD (2010) Oncogenic BRAF mutation with CDKN2A inactivation is characteristic of a subset of pediatric malignant astrocytomas. Cancer Res 70(2):512–519. doi:https://doi.org/10.1158/0008-5472.CAN-09-1851 CrossRef Schiffman JD, Hodgson JG, VandenBerg SR, Flaherty P, Polley MY, Yu M, Fisher PG, Rowitch DH, Ford JM, Berger MS, Ji H, Gutmann DH, James CD (2010) Oncogenic BRAF mutation with CDKN2A inactivation is characteristic of a subset of pediatric malignant astrocytomas. Cancer Res 70(2):512–519. doi:https://​doi.​org/​10.​1158/​0008-5472.​CAN-09-1851 CrossRef
7.
go back to reference Nucera C, Lawler J, Hodin R, Parangi S (2010) The BRAFV600E mutation: what is it really orchestrating in thyroid cancer? Oncotarget 1(8):751–756PubMedPubMedCentral Nucera C, Lawler J, Hodin R, Parangi S (2010) The BRAFV600E mutation: what is it really orchestrating in thyroid cancer? Oncotarget 1(8):751–756PubMedPubMedCentral
12.
go back to reference Chapman PB, Hauschild A, Robert C, Haanen JB, Ascierto P, Larkin J, Dummer R, Garbe C, Testori A, Maio M, Hogg D, Lorigan P, Lebbe C, Jouary T, Schadendorf D, Ribas A, O’Day SJ, Sosman JA, Kirkwood JM, Eggermont AM, Dreno B, Nolop K, Li J, Nelson B, Hou J, Lee RJ, Flaherty KT, McArthur GA (2011) Improved survival with vemurafenib in melanoma with BRAF V600E mutation. N Engl J Med 364(26):2507–2516. doi:https://doi.org/10.1056/NEJMoa1103782 CrossRef Chapman PB, Hauschild A, Robert C, Haanen JB, Ascierto P, Larkin J, Dummer R, Garbe C, Testori A, Maio M, Hogg D, Lorigan P, Lebbe C, Jouary T, Schadendorf D, Ribas A, O’Day SJ, Sosman JA, Kirkwood JM, Eggermont AM, Dreno B, Nolop K, Li J, Nelson B, Hou J, Lee RJ, Flaherty KT, McArthur GA (2011) Improved survival with vemurafenib in melanoma with BRAF V600E mutation. N Engl J Med 364(26):2507–2516. doi:https://​doi.​org/​10.​1056/​NEJMoa1103782 CrossRef
16.
go back to reference Salerno P, De Falco V, Tamburrino A, Nappi TC, Vecchio G, Schweppe RE, Bollag G, Santoro M, Salvatore G (2010) Cytostatic activity of adenosine triphosphate-competitive kinase inhibitors in BRAF mutant thyroid carcinoma cells. J Clin Endocrinol Metab 95(1):450–455. doi:https://doi.org/10.1210/jc.2009-0373 CrossRef Salerno P, De Falco V, Tamburrino A, Nappi TC, Vecchio G, Schweppe RE, Bollag G, Santoro M, Salvatore G (2010) Cytostatic activity of adenosine triphosphate-competitive kinase inhibitors in BRAF mutant thyroid carcinoma cells. J Clin Endocrinol Metab 95(1):450–455. doi:https://​doi.​org/​10.​1210/​jc.​2009-0373 CrossRef
18.
go back to reference Dasgupta T, Yang X, Hashizume R, Olow A, Kolkowitz I, Weiss W, Mueller S, Nicolaides T, James CD, Haas-Kogan DA (2012) Survival advantage with radiation combined with a selective BRAF V600E inhibitor in an orthotopic, intracranial model of BRAF V600E-mutated high-grade gliomas. Int J Radiat Oncol Biol Phys 84(3):S125CrossRef Dasgupta T, Yang X, Hashizume R, Olow A, Kolkowitz I, Weiss W, Mueller S, Nicolaides T, James CD, Haas-Kogan DA (2012) Survival advantage with radiation combined with a selective BRAF V600E inhibitor in an orthotopic, intracranial model of BRAF V600E-mutated high-grade gliomas. Int J Radiat Oncol Biol Phys 84(3):S125CrossRef
19.
go back to reference Dasgupta T, Yom SS, Yang X, Sottero T, Nicolaides TP, James CD, Haas-Kogan DA (2010) B-Raf inhibitor PLX4720 enhances the activity of temozolamide and radiation in a human glioblastoma cell line. Int J Radiat Oncol Biol Phys 78(3):S169, abstract number 2992CrossRef Dasgupta T, Yom SS, Yang X, Sottero T, Nicolaides TP, James CD, Haas-Kogan DA (2010) B-Raf inhibitor PLX4720 enhances the activity of temozolamide and radiation in a human glioblastoma cell line. Int J Radiat Oncol Biol Phys 78(3):S169, abstract number 2992CrossRef
20.
go back to reference Nicolaides TP, Li H, Solomon DA, Hariono S, Hashizume R, Barkovich K, Baker SJ, Paugh BS, Jones C, Forshew T, Hindley GF, Hodgson JG, Kim JS, Rowitch DH, Weiss WA, Waldman TA, James CD (2011) Targeted therapy for BRAFV600E malignant astrocytoma. Clin Cancer Res Off J Am Assoc Cancer Res 17(24):7595–7604. doi:https://doi.org/10.1158/1078-0432.CCR-11-1456 CrossRef Nicolaides TP, Li H, Solomon DA, Hariono S, Hashizume R, Barkovich K, Baker SJ, Paugh BS, Jones C, Forshew T, Hindley GF, Hodgson JG, Kim JS, Rowitch DH, Weiss WA, Waldman TA, James CD (2011) Targeted therapy for BRAFV600E malignant astrocytoma. Clin Cancer Res Off J Am Assoc Cancer Res 17(24):7595–7604. doi:https://​doi.​org/​10.​1158/​1078-0432.​CCR-11-1456 CrossRef
22.
go back to reference Schweppe RE, Klopper JP, Korch C, Pugazhenthi U, Benezra M, Knauf JA, Fagin JA, Marlow LA, Copland JA, Smallridge RC, Haugen BR (2008) Deoxyribonucleic acid profiling analysis of 40 human thyroid cancer cell lines reveals cross-contamination resulting in cell line redundancy and misidentification. J Clin Endocrinol Metab 93(11):4331–4341. doi:https://doi.org/10.1210/jc.2008-1102 CrossRef Schweppe RE, Klopper JP, Korch C, Pugazhenthi U, Benezra M, Knauf JA, Fagin JA, Marlow LA, Copland JA, Smallridge RC, Haugen BR (2008) Deoxyribonucleic acid profiling analysis of 40 human thyroid cancer cell lines reveals cross-contamination resulting in cell line redundancy and misidentification. J Clin Endocrinol Metab 93(11):4331–4341. doi:https://​doi.​org/​10.​1210/​jc.​2008-1102 CrossRef
23.
go back to reference Hauschild A, Grob JJ, Demidov LV, Jouary T, Gutzmer R, Millward M, Rutkowski P, Blank CU, Miller WH Jr, Kaempgen E, Martin-Algarra S, Karaszewska B, Mauch C, Chiarion-Sileni V, Martin AM, Swann S, Haney P, Mirakhur B, Guckert ME, Goodman V, Chapman PB (2012) Dabrafenib in BRAF-mutated metastatic melanoma: a multicentre, open-label, phase 3 randomised controlled trial. Lancet 380(9839):358–365. doi:https://doi.org/10.1016/S0140-6736(12)60868-X CrossRef Hauschild A, Grob JJ, Demidov LV, Jouary T, Gutzmer R, Millward M, Rutkowski P, Blank CU, Miller WH Jr, Kaempgen E, Martin-Algarra S, Karaszewska B, Mauch C, Chiarion-Sileni V, Martin AM, Swann S, Haney P, Mirakhur B, Guckert ME, Goodman V, Chapman PB (2012) Dabrafenib in BRAF-mutated metastatic melanoma: a multicentre, open-label, phase 3 randomised controlled trial. Lancet 380(9839):358–365. doi:https://​doi.​org/​10.​1016/​S0140-6736(12)60868-X CrossRef
Metadata
Title
Genotype-dependent cooperation of ionizing radiation with BRAF inhibition in BRAF V600E-mutated carcinomas
Authors
Tina Dasgupta
Daphne A. Haas-Kogan
Xiaodong Yang
Aleksandra Olow
Daniel X. Yang
Ashley Gragg
Lisa A. Orloff
Sue S. Yom
Publication date
01-10-2013
Publisher
Springer US
Published in
Investigational New Drugs / Issue 5/2013
Print ISSN: 0167-6997
Electronic ISSN: 1573-0646
DOI
https://doi.org/10.1007/s10637-013-9928-9

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