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ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES

The consequences of SMARCB1 loss in Atypical Teratoid Rhabdoid Tumors (ATRTs) have been extensively characterized at the epigenetic/transcriptomic level. In this study we detail the functional effect of SMARCB1 mutation on the MRT proteome, its relationship with RNA deregulation or lack thereof. We...

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Autores principales: Finetti, Martina Anna, Hacking, James, Lishman-Walker, Emma, Synowsky, Silvia A, Crosier, Stephen, Martin, Emmma, Burns, Jess, Shirran, Sally L, Bailey, Simon, Clifford, Steven C, Huang, Paul, Williamson, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715928/
http://dx.doi.org/10.1093/neuonc/noaa222.024
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author Finetti, Martina Anna
Hacking, James
Lishman-Walker, Emma
Synowsky, Silvia A
Crosier, Stephen
Martin, Emmma
Burns, Jess
Shirran, Sally L
Bailey, Simon
Clifford, Steven C
Huang, Paul
Williamson, Daniel
author_facet Finetti, Martina Anna
Hacking, James
Lishman-Walker, Emma
Synowsky, Silvia A
Crosier, Stephen
Martin, Emmma
Burns, Jess
Shirran, Sally L
Bailey, Simon
Clifford, Steven C
Huang, Paul
Williamson, Daniel
author_sort Finetti, Martina Anna
collection PubMed
description The consequences of SMARCB1 loss in Atypical Teratoid Rhabdoid Tumors (ATRTs) have been extensively characterized at the epigenetic/transcriptomic level. In this study we detail the functional effect of SMARCB1 mutation on the MRT proteome, its relationship with RNA deregulation or lack thereof. We performed unlabeled discovery proteomics using MS-SWATH on MRT cells in which SMARCB1 was forcibly re-expressed (5 cell lines, +/-SMARCB1); analyzing changes in protein abundance within 3 fractions (total, membrane, nuclear). We generated a custom spectral library, covering >8,000 proteins, for analysis of the ATRT proteome using a pH fractionated pool of each cellular subfraction. This SMARCB1-dependent ATRT spectral library constitutes a powerful tool for profiling proteins of potentially therapeutic relevance in both model systems and primary ATRT samples. We show that whilst gene expression and protein abundance are significantly related there are many instances whereby expression changes do not reliably predict protein abundances. Several hundred proteins show significantly increased abundance (p<0.01) with no concomitant change by RNA-seq. SMARCB1 mutation is able to invoke critical changes in post-transcriptional/translational regulation as well as sub-cellular localization. By integration with whole-genome CRISPR/cas9 screening we describe functionally essential SMARCB1 dependent pathway/membrane biomarkers, evident at the protein but not the RNA level. We describe several which are druggable and suggest certain therapeutic modalities e.g. specific combinations of RTKs, RNA-binding proteins/splicing factors (SpliceosomeA, U4:U5:U6 tri-snRNP complexes). Our analysis links, for the first time in ATRT, genome-wide transcriptomic and proteome aberrations and reveals broad mechanisms underlying the effect of SMARCB1 mutation.
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spelling pubmed-77159282020-12-09 ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES Finetti, Martina Anna Hacking, James Lishman-Walker, Emma Synowsky, Silvia A Crosier, Stephen Martin, Emmma Burns, Jess Shirran, Sally L Bailey, Simon Clifford, Steven C Huang, Paul Williamson, Daniel Neuro Oncol Atypical Teratoid/Rhabdoid Tumors The consequences of SMARCB1 loss in Atypical Teratoid Rhabdoid Tumors (ATRTs) have been extensively characterized at the epigenetic/transcriptomic level. In this study we detail the functional effect of SMARCB1 mutation on the MRT proteome, its relationship with RNA deregulation or lack thereof. We performed unlabeled discovery proteomics using MS-SWATH on MRT cells in which SMARCB1 was forcibly re-expressed (5 cell lines, +/-SMARCB1); analyzing changes in protein abundance within 3 fractions (total, membrane, nuclear). We generated a custom spectral library, covering >8,000 proteins, for analysis of the ATRT proteome using a pH fractionated pool of each cellular subfraction. This SMARCB1-dependent ATRT spectral library constitutes a powerful tool for profiling proteins of potentially therapeutic relevance in both model systems and primary ATRT samples. We show that whilst gene expression and protein abundance are significantly related there are many instances whereby expression changes do not reliably predict protein abundances. Several hundred proteins show significantly increased abundance (p<0.01) with no concomitant change by RNA-seq. SMARCB1 mutation is able to invoke critical changes in post-transcriptional/translational regulation as well as sub-cellular localization. By integration with whole-genome CRISPR/cas9 screening we describe functionally essential SMARCB1 dependent pathway/membrane biomarkers, evident at the protein but not the RNA level. We describe several which are druggable and suggest certain therapeutic modalities e.g. specific combinations of RTKs, RNA-binding proteins/splicing factors (SpliceosomeA, U4:U5:U6 tri-snRNP complexes). Our analysis links, for the first time in ATRT, genome-wide transcriptomic and proteome aberrations and reveals broad mechanisms underlying the effect of SMARCB1 mutation. Oxford University Press 2020-12-04 /pmc/articles/PMC7715928/ http://dx.doi.org/10.1093/neuonc/noaa222.024 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Atypical Teratoid/Rhabdoid Tumors
Finetti, Martina Anna
Hacking, James
Lishman-Walker, Emma
Synowsky, Silvia A
Crosier, Stephen
Martin, Emmma
Burns, Jess
Shirran, Sally L
Bailey, Simon
Clifford, Steven C
Huang, Paul
Williamson, Daniel
ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title_full ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title_fullStr ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title_full_unstemmed ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title_short ATRT-25. INTEGRATED QUANTITATIVE SWATH-MS PROTEOMICS ANALYSIS OF ATRTs UNCOVERS NEW THERAPEUTIC OPPORTUNITIES
title_sort atrt-25. integrated quantitative swath-ms proteomics analysis of atrts uncovers new therapeutic opportunities
topic Atypical Teratoid/Rhabdoid Tumors
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715928/
http://dx.doi.org/10.1093/neuonc/noaa222.024
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