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Proteomic profiling of high risk medulloblastoma reveals functional biology

Genomic characterization of medulloblastoma has improved molecular risk classification but struggles to define functional biological processes, particularly for the most aggressive subgroups. We present here a novel proteomic approach to this problem using a reference library of stable isotope label...

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Autores principales: Staal, Jerome A., Lau, Ling San, Zhang, Huizhen, Ingram, Wendy J., Hallahan, Andrew R., Northcott, Paul A., Pfister, Stefan M., Wechsler-Reya, Robert J., Rusert, Jessica M., Taylor, Michael D., Cho, Yoon-Jae, Packer, Roger J., Brown, Kristy J., Rood, Brian R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4546489/
https://www.ncbi.nlm.nih.gov/pubmed/25970789
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author Staal, Jerome A.
Lau, Ling San
Zhang, Huizhen
Ingram, Wendy J.
Hallahan, Andrew R.
Northcott, Paul A.
Pfister, Stefan M.
Wechsler-Reya, Robert J.
Rusert, Jessica M.
Taylor, Michael D.
Cho, Yoon-Jae
Packer, Roger J.
Brown, Kristy J.
Rood, Brian R.
author_facet Staal, Jerome A.
Lau, Ling San
Zhang, Huizhen
Ingram, Wendy J.
Hallahan, Andrew R.
Northcott, Paul A.
Pfister, Stefan M.
Wechsler-Reya, Robert J.
Rusert, Jessica M.
Taylor, Michael D.
Cho, Yoon-Jae
Packer, Roger J.
Brown, Kristy J.
Rood, Brian R.
author_sort Staal, Jerome A.
collection PubMed
description Genomic characterization of medulloblastoma has improved molecular risk classification but struggles to define functional biological processes, particularly for the most aggressive subgroups. We present here a novel proteomic approach to this problem using a reference library of stable isotope labeled medulloblastoma-specific proteins as a spike-in standard for accurate quantification of the tumor proteome. Utilizing high-resolution mass spectrometry, we quantified the tumor proteome of group 3 medulloblastoma cells and demonstrate that high-risk MYC amplified tumors can be segregated based on protein expression patterns. We cross-validated the differentially expressed protein candidates using an independent transcriptomic data set and further confirmed them in a separate cohort of medulloblastoma tissue samples to identify the most robust proteogenomic differences. Interestingly, highly expressed proteins associated with MYC-amplified tumors were significantly related to glycolytic metabolic pathways via alternative splicing of pyruvate kinase (PKM) by heterogeneous ribonucleoproteins (HNRNPs). Furthermore, when maintained under hypoxic conditions, these MYC-amplified tumors demonstrated increased viability compared to non-amplified tumors within the same subgroup. Taken together, these findings highlight the power of proteomics as an integrative platform to help prioritize genetic and molecular drivers of cancer biology and behavior.
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spelling pubmed-45464892015-08-27 Proteomic profiling of high risk medulloblastoma reveals functional biology Staal, Jerome A. Lau, Ling San Zhang, Huizhen Ingram, Wendy J. Hallahan, Andrew R. Northcott, Paul A. Pfister, Stefan M. Wechsler-Reya, Robert J. Rusert, Jessica M. Taylor, Michael D. Cho, Yoon-Jae Packer, Roger J. Brown, Kristy J. Rood, Brian R. Oncotarget Research Paper Genomic characterization of medulloblastoma has improved molecular risk classification but struggles to define functional biological processes, particularly for the most aggressive subgroups. We present here a novel proteomic approach to this problem using a reference library of stable isotope labeled medulloblastoma-specific proteins as a spike-in standard for accurate quantification of the tumor proteome. Utilizing high-resolution mass spectrometry, we quantified the tumor proteome of group 3 medulloblastoma cells and demonstrate that high-risk MYC amplified tumors can be segregated based on protein expression patterns. We cross-validated the differentially expressed protein candidates using an independent transcriptomic data set and further confirmed them in a separate cohort of medulloblastoma tissue samples to identify the most robust proteogenomic differences. Interestingly, highly expressed proteins associated with MYC-amplified tumors were significantly related to glycolytic metabolic pathways via alternative splicing of pyruvate kinase (PKM) by heterogeneous ribonucleoproteins (HNRNPs). Furthermore, when maintained under hypoxic conditions, these MYC-amplified tumors demonstrated increased viability compared to non-amplified tumors within the same subgroup. Taken together, these findings highlight the power of proteomics as an integrative platform to help prioritize genetic and molecular drivers of cancer biology and behavior. Impact Journals LLC 2015-04-23 /pmc/articles/PMC4546489/ /pubmed/25970789 Text en Copyright: © 2015 Staal et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Staal, Jerome A.
Lau, Ling San
Zhang, Huizhen
Ingram, Wendy J.
Hallahan, Andrew R.
Northcott, Paul A.
Pfister, Stefan M.
Wechsler-Reya, Robert J.
Rusert, Jessica M.
Taylor, Michael D.
Cho, Yoon-Jae
Packer, Roger J.
Brown, Kristy J.
Rood, Brian R.
Proteomic profiling of high risk medulloblastoma reveals functional biology
title Proteomic profiling of high risk medulloblastoma reveals functional biology
title_full Proteomic profiling of high risk medulloblastoma reveals functional biology
title_fullStr Proteomic profiling of high risk medulloblastoma reveals functional biology
title_full_unstemmed Proteomic profiling of high risk medulloblastoma reveals functional biology
title_short Proteomic profiling of high risk medulloblastoma reveals functional biology
title_sort proteomic profiling of high risk medulloblastoma reveals functional biology
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4546489/
https://www.ncbi.nlm.nih.gov/pubmed/25970789
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