Cargando…
LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER
Pediatric low-grade gliomas (PLGGs) are the most common brain tumors in children, with varying degrees of brain invasion. Recent whole-genome sequencing has identified a rare gene fusion involving RAF1, a RAF isoform. Unlike other RAF fusions, RAF1 fusions are resistant to existing RAF inhibitors. T...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10259918/ http://dx.doi.org/10.1093/neuonc/noad073.214 |
_version_ | 1785057745248976896 |
---|---|
author | Jung, Geena Jain, Payal Liang, Zizhuo Li, Feng Rathi, Komal Chen, Xin Straka, Joshua Koptyra, Mateusz Sanchez-maldonado, Stephanie Fathikazerooni, Anahita Familiar, Ariana Nabavizadeh, Ali Waanders, Angela Huang, Xi Resnick, Adam Song, Yuanquan |
author_facet | Jung, Geena Jain, Payal Liang, Zizhuo Li, Feng Rathi, Komal Chen, Xin Straka, Joshua Koptyra, Mateusz Sanchez-maldonado, Stephanie Fathikazerooni, Anahita Familiar, Ariana Nabavizadeh, Ali Waanders, Angela Huang, Xi Resnick, Adam Song, Yuanquan |
author_sort | Jung, Geena |
collection | PubMed |
description | Pediatric low-grade gliomas (PLGGs) are the most common brain tumors in children, with varying degrees of brain invasion. Recent whole-genome sequencing has identified a rare gene fusion involving RAF1, a RAF isoform. Unlike other RAF fusions, RAF1 fusions are resistant to existing RAF inhibitors. Therefore, aside from surgical resection with adjuvant chemotherapy and radiation therapy, there are few targeted therapeutic alternatives for RAF1-fusion-driven PLGGs. Despite the prevalence and challenges this disease presented, our understanding of PLGGs was limited by a lack of genetic models. We ultimately picked Drosophila melanogaster as our model organism due to the conservation of major signaling pathways between flies and humans. Furthermore, this connection between humans and flies, coupled with other technical advantages associated with this model organism, like short generation cycle and its powerful genetic toolbox, makes Drosophila melanogaster an ideal organism to study the genesis and progression of PLGGs. With the help of the GAL4/UAS system, we established four fusion-driven PLGG fly genetic models and found that glial overexpression of QKI-RAF1, a fusion gene in pilocytic astrocytomas, induces an invasion-like phenotype with aberrant glial migration. This migration defect was suppressed by glial overexpression of repulsive guidance signaling receptors Robo2 or PlexA/B, indicating the dysregulation of repulsive guidance signaling pathways. Immunostaining coupled with quantitative analysis revealed that Robo2 expression is downregulated in migrating tumor cells in flies, which is recapitulated in mouse astrocytes overexpressing QKI-RAF1 and PLGG patients with RAF fusions. We further broaden our findings by profiling the tumor transcriptomes, revealing potential downstream effectors, including the G protein-coupled receptor GPR180/CG9304, and inhibition of which suppresses tumor invasion in flies. Taken together, we present the PLGG fly model system, leading to the discovery of Robo2, Plexins, and GPR180/CG9304 as potential therapeutic targets. |
format | Online Article Text |
id | pubmed-10259918 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-102599182023-06-13 LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER Jung, Geena Jain, Payal Liang, Zizhuo Li, Feng Rathi, Komal Chen, Xin Straka, Joshua Koptyra, Mateusz Sanchez-maldonado, Stephanie Fathikazerooni, Anahita Familiar, Ariana Nabavizadeh, Ali Waanders, Angela Huang, Xi Resnick, Adam Song, Yuanquan Neuro Oncol Final Category: Low Grade Gliomas - LGG Pediatric low-grade gliomas (PLGGs) are the most common brain tumors in children, with varying degrees of brain invasion. Recent whole-genome sequencing has identified a rare gene fusion involving RAF1, a RAF isoform. Unlike other RAF fusions, RAF1 fusions are resistant to existing RAF inhibitors. Therefore, aside from surgical resection with adjuvant chemotherapy and radiation therapy, there are few targeted therapeutic alternatives for RAF1-fusion-driven PLGGs. Despite the prevalence and challenges this disease presented, our understanding of PLGGs was limited by a lack of genetic models. We ultimately picked Drosophila melanogaster as our model organism due to the conservation of major signaling pathways between flies and humans. Furthermore, this connection between humans and flies, coupled with other technical advantages associated with this model organism, like short generation cycle and its powerful genetic toolbox, makes Drosophila melanogaster an ideal organism to study the genesis and progression of PLGGs. With the help of the GAL4/UAS system, we established four fusion-driven PLGG fly genetic models and found that glial overexpression of QKI-RAF1, a fusion gene in pilocytic astrocytomas, induces an invasion-like phenotype with aberrant glial migration. This migration defect was suppressed by glial overexpression of repulsive guidance signaling receptors Robo2 or PlexA/B, indicating the dysregulation of repulsive guidance signaling pathways. Immunostaining coupled with quantitative analysis revealed that Robo2 expression is downregulated in migrating tumor cells in flies, which is recapitulated in mouse astrocytes overexpressing QKI-RAF1 and PLGG patients with RAF fusions. We further broaden our findings by profiling the tumor transcriptomes, revealing potential downstream effectors, including the G protein-coupled receptor GPR180/CG9304, and inhibition of which suppresses tumor invasion in flies. Taken together, we present the PLGG fly model system, leading to the discovery of Robo2, Plexins, and GPR180/CG9304 as potential therapeutic targets. Oxford University Press 2023-06-12 /pmc/articles/PMC10259918/ http://dx.doi.org/10.1093/neuonc/noad073.214 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://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 | Final Category: Low Grade Gliomas - LGG Jung, Geena Jain, Payal Liang, Zizhuo Li, Feng Rathi, Komal Chen, Xin Straka, Joshua Koptyra, Mateusz Sanchez-maldonado, Stephanie Fathikazerooni, Anahita Familiar, Ariana Nabavizadeh, Ali Waanders, Angela Huang, Xi Resnick, Adam Song, Yuanquan LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title | LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title_full | LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title_fullStr | LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title_full_unstemmed | LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title_short | LGG-04. CLINICALLY RELEVANT MODELING OF FUSION-DRIVEN PEDIATRIC LOW GRADE GLIOMAS USING DROSOPHILA MELANOGASTER |
title_sort | lgg-04. clinically relevant modeling of fusion-driven pediatric low grade gliomas using drosophila melanogaster |
topic | Final Category: Low Grade Gliomas - LGG |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10259918/ http://dx.doi.org/10.1093/neuonc/noad073.214 |
work_keys_str_mv | AT junggeena lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT jainpayal lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT liangzizhuo lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT lifeng lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT rathikomal lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT chenxin lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT strakajoshua lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT koptyramateusz lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT sanchezmaldonadostephanie lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT fathikazeroonianahita lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT familiarariana lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT nabavizadehali lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT waandersangela lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT huangxi lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT resnickadam lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster AT songyuanquan lgg04clinicallyrelevantmodelingoffusiondrivenpediatriclowgradegliomasusingdrosophilamelanogaster |