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MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS

Medulloblastomas are characterized by poor neuronal lineage specification. Expression of the RE1 Silencing Transcription Factor (REST), a regulator of neurogenesis, is aberrantly elevated in human sonic hedgehog (SHH) medulloblastomas. Using a novel transgenic mouse (REST(TG)) model, we demonstrated...

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Autores principales: Shaik, Shavali, Maegawa, Shinji, Haltom, Amanda, Dobson, Tara, Schadler, Keri, Gopalakrishnan, Vidya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715809/
http://dx.doi.org/10.1093/neuonc/noaa222.559
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author Shaik, Shavali
Maegawa, Shinji
Haltom, Amanda
Dobson, Tara
Schadler, Keri
Gopalakrishnan, Vidya
author_facet Shaik, Shavali
Maegawa, Shinji
Haltom, Amanda
Dobson, Tara
Schadler, Keri
Gopalakrishnan, Vidya
author_sort Shaik, Shavali
collection PubMed
description Medulloblastomas are characterized by poor neuronal lineage specification. Expression of the RE1 Silencing Transcription Factor (REST), a regulator of neurogenesis, is aberrantly elevated in human sonic hedgehog (SHH) medulloblastomas. Using a novel transgenic mouse (REST(TG)) model, we demonstrated that REST is a driver of medulloblastoma genesis and promotes tumor progression in mice with loss of an allele of Ptch1 (Ptch(+/−)). Tumor formation in Ptch(+/−)/REST(TG) mice occurred with 100% penetrance and a latency of 10–90 days in contrast to Ptch(+/−) mice, which developed tumors at a frequency of 15–20% at 6–9 months of age. Histopathological analyses showed leptomeningeal dissemination of tumors in Ptch(+/−)/REST(TG) mice, in addition to a significant increase in tumor vasculature compared to tumors in Ptch(+/−) mice. These findings were recapitulated in xenografted tumors of isogenic low and high-REST medulloblastomas in mice. Proteome profiler human angiogenesis array analyses revealed a REST-dependent increase in vascular endothelial growth factor (VEGF) and placental growth factor (PLGF). Surprisingly, REST elevation also caused co-localization of tumor cells with tumor vasculature, specifically endothelial cells, and was associated with upregulated expression of a number of pro-angiogenic genes, including receptor VEGFR1 and the positive regulator of endothelial differentiation, E26 transformation specific-1 (ETS1), in tumor cells. In addition, expression of several anti-angiogenic molecules was downregulated. Knockdown of ETS1 reversed the above findings. Thus, our data demonstrate that REST elevation not only blocks neurogenesis in medulloblastoma cells, but also modulates the tumor microenvironment by mechanisms that likely involve vascular mimicry.
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spelling pubmed-77158092020-12-09 MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS Shaik, Shavali Maegawa, Shinji Haltom, Amanda Dobson, Tara Schadler, Keri Gopalakrishnan, Vidya Neuro Oncol Medulloblastoma (Research) Medulloblastomas are characterized by poor neuronal lineage specification. Expression of the RE1 Silencing Transcription Factor (REST), a regulator of neurogenesis, is aberrantly elevated in human sonic hedgehog (SHH) medulloblastomas. Using a novel transgenic mouse (REST(TG)) model, we demonstrated that REST is a driver of medulloblastoma genesis and promotes tumor progression in mice with loss of an allele of Ptch1 (Ptch(+/−)). Tumor formation in Ptch(+/−)/REST(TG) mice occurred with 100% penetrance and a latency of 10–90 days in contrast to Ptch(+/−) mice, which developed tumors at a frequency of 15–20% at 6–9 months of age. Histopathological analyses showed leptomeningeal dissemination of tumors in Ptch(+/−)/REST(TG) mice, in addition to a significant increase in tumor vasculature compared to tumors in Ptch(+/−) mice. These findings were recapitulated in xenografted tumors of isogenic low and high-REST medulloblastomas in mice. Proteome profiler human angiogenesis array analyses revealed a REST-dependent increase in vascular endothelial growth factor (VEGF) and placental growth factor (PLGF). Surprisingly, REST elevation also caused co-localization of tumor cells with tumor vasculature, specifically endothelial cells, and was associated with upregulated expression of a number of pro-angiogenic genes, including receptor VEGFR1 and the positive regulator of endothelial differentiation, E26 transformation specific-1 (ETS1), in tumor cells. In addition, expression of several anti-angiogenic molecules was downregulated. Knockdown of ETS1 reversed the above findings. Thus, our data demonstrate that REST elevation not only blocks neurogenesis in medulloblastoma cells, but also modulates the tumor microenvironment by mechanisms that likely involve vascular mimicry. Oxford University Press 2020-12-04 /pmc/articles/PMC7715809/ http://dx.doi.org/10.1093/neuonc/noaa222.559 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 Medulloblastoma (Research)
Shaik, Shavali
Maegawa, Shinji
Haltom, Amanda
Dobson, Tara
Schadler, Keri
Gopalakrishnan, Vidya
MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title_full MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title_fullStr MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title_full_unstemmed MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title_short MBRS-53. CONTROL OF MEDULLOBLASTOMA VASCULATURE BY A REGULATOR OF NEUROGENESIS
title_sort mbrs-53. control of medulloblastoma vasculature by a regulator of neurogenesis
topic Medulloblastoma (Research)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715809/
http://dx.doi.org/10.1093/neuonc/noaa222.559
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