Browsing by Author "Zhukova, Nataliya"
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- BRAF Mutation and CDKN2A deletion define a clinically distinct subgroup of childhood secondary high-grade gliomaPublication . Mistry, Matthew; Zhukova, Nataliya; Merico, Daniele; Rakopoulos, Patricia; Krishnatry, Rahul; Shago, Mary; Stavropoulos, James; Alon, Noa; Pole, Jason D.; Ray, Peter N.; Navickiene, Vilma; Mangerel, Joshua; Remke, Marc; Buczkowicz, Pawel; Ramaswamy, Vijay; Stucklin, Ana Guerreiro; Li, Martin; Young, Edwin J.; Zhang, Cindy; Castelo-Branco, Pedro; Bakry, Doua; Laughlin, Suzanne; Shlien, Adam; Chan, Jennifer; Ligon, Keith L.; Rutka, James T.; Dirks, Peter B.; Taylor, Michael D.; Greenberg, Mark; Malkin, David; Huang, Annie; Bouffet, Eric; Hawkins, Cynthia E.; Tabori, UriPurpose To uncover the genetic events leading to transformation of pediatric low-grade glioma (PLGG) to secondary high-grade glioma (sHGG). Patients and Methods We retrospectively identified patients with sHGG from a population-based cohort of 886 patients with PLGG with long clinical follow-up. Exome sequencing and array CGH were performed on available samples followed by detailed genetic analysis of the entire sHGG cohort. Clinical and outcome data of genetically distinct subgroups were obtained. Results sHGG was observed in 2.9% of PLGGs (26 of 886 patients). Patients with sHGG had a high frequency of nonsilent somatic mutations compared with patients with primary pediatric high-grade glioma (HGG; median, 25 mutations per exome; P = .0042). Alterations in chromatin-modifying genes and telomere-maintenance pathways were commonly observed, whereas no sHGG harbored the BRAF-KIAA1549 fusion. The most recurrent alterations were BRAF V600E and CDKN2A deletion in 39% and 57% of sHGGs, respectively. Importantly, all BRAF V600E and 80% of CDKN2A alterations could be traced back to their PLGG counterparts. BRAF V600E distinguished sHGG from primary HGG (P = .0023), whereas BRAF and CDKN2A alterations were less commonly observed in PLGG that did not transform (P < .001 and P < .001 respectively). PLGGs with BRAF mutations had longer latency to transformation than wild-type PLGG (median, 6.65 years [range, 3.5 to 20.3 years] v 1.59 years [range, 0.32 to 15.9 years], respectively; P = .0389). Furthermore, 5-year overall survival was 75% 15% and 29% +/- 12% for children with BRAF mutant and wild-type tumors, respectively (P = .024). Conclusion BRAF V600E mutations and CDKN2A deletions constitute a clinically distinct subtype of sHGG. The prolonged course to transformation for BRAF V600E PLGGs provides an opportunity for surgical interventions, surveillance, and targeted therapies to mitigate the outcome of sHGG. (C) 2015 by American Society of Clinical Oncology
- WNT activation by lithium abrogates TP53 mutation associated radiation resistance in medulloblastomaPublication . Zhukova, Nataliya; Ramaswamy, Vijay; Remke, Marc; Martin, Dianna C.; Castelo-Branco, Pedro; Zhang, Cindy H.; Fraser, Michael; Tse, Ken; Poon, Raymond; Shih, David J. H.; Baskin, Berivan; Ray, Peter N.; Bouffet, Eric; Dirks, Peter; Von Bueren, Andre O.; Pfaff, Elke; Korshunov, Andrey; Jones, David T. W.; Northcott, Paul A.; Kool, Marcel; Pugh, Trevor J.; Pomeroy, Scott L.; Cho, Yoon-Jae; Pietsch, Torsten; Gessi, Marco; Rutkowski, Stefan; Bognar, Laszlo; Cho, Byung-Kyu; Eberhart, Charles G.; Conter, Cecile Faure; Fouladi, Maryam; French, Pim J.; Grajkowska, Wieslawa A.; Gupta, Nalin; Hauser, Peter; Jabado, Nada; Vasiljevic, Alexandre; Jung, Shin; Kim, Seung-Ki; Klekner, Almos; Kumabe, Toshihiro; Lach, Boleslaw; Leonard, Jeffrey R.; Liau, Linda M.; Massimi, Luca; Pollack, Ian F.; Ra, Young Shin; Rubin, Joshua B.; Van Meir, Erwin G.; Wang, Kyu-Chang; Weiss, William A.; Zitterbart, Karel; Bristow, Robert G.; Alman, Benjamin; Hawkins, Cynthia E.; Malkin, David; Clifford, Steven C.; Pfister, Stefan M.; Taylor, Michael D.; Tabori, UriTP53 mutations confer subgroup specific poor survival for children with medulloblastoma. We hypothesized that WNT activation which is associated with improved survival for such children abrogates TP53 related radioresistance and can be used to sensitize TP53 mutant tumors for radiation. We examined the subgroup-specific role of TP53 mutations in a cohort of 314 patients treated with radiation. TP53 wild-type or mutant human medulloblastoma cell-lines and normal neural stem cells were used to test radioresistance of TP53 mutations and the radiosensitizing effect of WNT activation on tumors and the developing brain. Children with WNT/TP53 mutant medulloblastoma had higher 5-year survival than those with SHH/TP53 mutant tumours (100% and 36.6% +/- 8.7%, respectively (p < 0.001)). Introduction of TP53 mutation into medulloblastoma cells induced radioresistance (survival fractions at 2Gy (SF2) of 89% +/- 2% vs. 57.4% +/- 1.8% (p < 0.01)). In contrast, beta-catenin mutation sensitized TP53 mutant cells to radiation (p < 0.05). Lithium, an activator of the WNT pathway, sensitized TP53 mutant medulloblastoma to radiation (SF2 of 43.5% +/- 1.5% in lithium treated cells vs. 56.6 +/- 3% (p < 0.01)) accompanied by increased number of.H2AX foci. Normal neural stem cells were protected from lithium induced radiation damage (SF2 of 33% +/- 8% for lithium treated cells vs. 27% +/- 3% for untreated controls (p = 0.05). Poor survival of patients with TP53 mutant medulloblastoma may be related to radiation resistance. Since constitutive activation of the WNT pathway by lithium sensitizes TP53 mutant medulloblastoma cells and protect normal neural stem cells from radiation, this oral drug may represent an attractive novel therapy for high-risk medulloblastomas.