PRMT5 inhibition disrupts splicing and stemness in glioblastoma

The arginine methyltransferase PRMT5 is over-expressed in cancer and has a role in the maintenance of stem cells. Here, the authors show that PRMT5 inhibitors can block the growth of patient derived glioblastoma stem cell cultures in vitro and in vivo, suggesting that PRMT5 inhibition may be a usefu...

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Autores principales: Patty Sachamitr, Jolene C. Ho, Felipe E. Ciamponi, Wail Ba-Alawi, Fiona J. Coutinho, Paul Guilhamon, Michelle M. Kushida, Florence M. G. Cavalli, Lilian Lee, Naghmeh Rastegar, Victoria Vu, María Sánchez-Osuna, Jasmin Coulombe-Huntington, Evgeny Kanshin, Heather Whetstone, Mathieu Durand, Philippe Thibault, Kirsten Hart, Maria Mangos, Joseph Veyhl, Wenjun Chen, Nhat Tran, Bang-Chi Duong, Ahmed M. Aman, Xinghui Che, Xiaoyang Lan, Owen Whitley, Olga Zaslaver, Dalia Barsyte-Lovejoy, Laura M. Richards, Ian Restall, Amy Caudy, Hannes L. Röst, Zahid Quyoom Bonday, Mark Bernstein, Sunit Das, Michael D. Cusimano, Julian Spears, Gary D. Bader, Trevor J. Pugh, Mike Tyers, Mathieu Lupien, Benjamin Haibe-Kains, H. Artee Luchman, Samuel Weiss, Katlin B. Massirer, Panagiotis Prinos, Cheryl H. Arrowsmith, Peter B. Dirks
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/ce276d7ef43841fc91a953ffc3d02ecd
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spelling oai:doaj.org-article:ce276d7ef43841fc91a953ffc3d02ecd2021-12-02T14:11:09ZPRMT5 inhibition disrupts splicing and stemness in glioblastoma10.1038/s41467-021-21204-52041-1723https://doaj.org/article/ce276d7ef43841fc91a953ffc3d02ecd2021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21204-5https://doaj.org/toc/2041-1723The arginine methyltransferase PRMT5 is over-expressed in cancer and has a role in the maintenance of stem cells. Here, the authors show that PRMT5 inhibitors can block the growth of patient derived glioblastoma stem cell cultures in vitro and in vivo, suggesting that PRMT5 inhibition may be a useful therapeutic strategyPatty SachamitrJolene C. HoFelipe E. CiamponiWail Ba-AlawiFiona J. CoutinhoPaul GuilhamonMichelle M. KushidaFlorence M. G. CavalliLilian LeeNaghmeh RastegarVictoria VuMaría Sánchez-OsunaJasmin Coulombe-HuntingtonEvgeny KanshinHeather WhetstoneMathieu DurandPhilippe ThibaultKirsten HartMaria MangosJoseph VeyhlWenjun ChenNhat TranBang-Chi DuongAhmed M. AmanXinghui CheXiaoyang LanOwen WhitleyOlga ZaslaverDalia Barsyte-LovejoyLaura M. RichardsIan RestallAmy CaudyHannes L. RöstZahid Quyoom BondayMark BernsteinSunit DasMichael D. CusimanoJulian SpearsGary D. BaderTrevor J. PughMike TyersMathieu LupienBenjamin Haibe-KainsH. Artee LuchmanSamuel WeissKatlin B. MassirerPanagiotis PrinosCheryl H. ArrowsmithPeter B. DirksNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-17 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Patty Sachamitr
Jolene C. Ho
Felipe E. Ciamponi
Wail Ba-Alawi
Fiona J. Coutinho
Paul Guilhamon
Michelle M. Kushida
Florence M. G. Cavalli
Lilian Lee
Naghmeh Rastegar
Victoria Vu
María Sánchez-Osuna
Jasmin Coulombe-Huntington
Evgeny Kanshin
Heather Whetstone
Mathieu Durand
Philippe Thibault
Kirsten Hart
Maria Mangos
Joseph Veyhl
Wenjun Chen
Nhat Tran
Bang-Chi Duong
Ahmed M. Aman
Xinghui Che
Xiaoyang Lan
Owen Whitley
Olga Zaslaver
Dalia Barsyte-Lovejoy
Laura M. Richards
Ian Restall
Amy Caudy
Hannes L. Röst
Zahid Quyoom Bonday
Mark Bernstein
Sunit Das
Michael D. Cusimano
Julian Spears
Gary D. Bader
Trevor J. Pugh
Mike Tyers
Mathieu Lupien
Benjamin Haibe-Kains
H. Artee Luchman
Samuel Weiss
Katlin B. Massirer
Panagiotis Prinos
Cheryl H. Arrowsmith
Peter B. Dirks
PRMT5 inhibition disrupts splicing and stemness in glioblastoma
description The arginine methyltransferase PRMT5 is over-expressed in cancer and has a role in the maintenance of stem cells. Here, the authors show that PRMT5 inhibitors can block the growth of patient derived glioblastoma stem cell cultures in vitro and in vivo, suggesting that PRMT5 inhibition may be a useful therapeutic strategy
format article
author Patty Sachamitr
Jolene C. Ho
Felipe E. Ciamponi
Wail Ba-Alawi
Fiona J. Coutinho
Paul Guilhamon
Michelle M. Kushida
Florence M. G. Cavalli
Lilian Lee
Naghmeh Rastegar
Victoria Vu
María Sánchez-Osuna
Jasmin Coulombe-Huntington
Evgeny Kanshin
Heather Whetstone
Mathieu Durand
Philippe Thibault
Kirsten Hart
Maria Mangos
Joseph Veyhl
Wenjun Chen
Nhat Tran
Bang-Chi Duong
Ahmed M. Aman
Xinghui Che
Xiaoyang Lan
Owen Whitley
Olga Zaslaver
Dalia Barsyte-Lovejoy
Laura M. Richards
Ian Restall
Amy Caudy
Hannes L. Röst
Zahid Quyoom Bonday
Mark Bernstein
Sunit Das
Michael D. Cusimano
Julian Spears
Gary D. Bader
Trevor J. Pugh
Mike Tyers
Mathieu Lupien
Benjamin Haibe-Kains
H. Artee Luchman
Samuel Weiss
Katlin B. Massirer
Panagiotis Prinos
Cheryl H. Arrowsmith
Peter B. Dirks
author_facet Patty Sachamitr
Jolene C. Ho
Felipe E. Ciamponi
Wail Ba-Alawi
Fiona J. Coutinho
Paul Guilhamon
Michelle M. Kushida
Florence M. G. Cavalli
Lilian Lee
Naghmeh Rastegar
Victoria Vu
María Sánchez-Osuna
Jasmin Coulombe-Huntington
Evgeny Kanshin
Heather Whetstone
Mathieu Durand
Philippe Thibault
Kirsten Hart
Maria Mangos
Joseph Veyhl
Wenjun Chen
Nhat Tran
Bang-Chi Duong
Ahmed M. Aman
Xinghui Che
Xiaoyang Lan
Owen Whitley
Olga Zaslaver
Dalia Barsyte-Lovejoy
Laura M. Richards
Ian Restall
Amy Caudy
Hannes L. Röst
Zahid Quyoom Bonday
Mark Bernstein
Sunit Das
Michael D. Cusimano
Julian Spears
Gary D. Bader
Trevor J. Pugh
Mike Tyers
Mathieu Lupien
Benjamin Haibe-Kains
H. Artee Luchman
Samuel Weiss
Katlin B. Massirer
Panagiotis Prinos
Cheryl H. Arrowsmith
Peter B. Dirks
author_sort Patty Sachamitr
title PRMT5 inhibition disrupts splicing and stemness in glioblastoma
title_short PRMT5 inhibition disrupts splicing and stemness in glioblastoma
title_full PRMT5 inhibition disrupts splicing and stemness in glioblastoma
title_fullStr PRMT5 inhibition disrupts splicing and stemness in glioblastoma
title_full_unstemmed PRMT5 inhibition disrupts splicing and stemness in glioblastoma
title_sort prmt5 inhibition disrupts splicing and stemness in glioblastoma
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/ce276d7ef43841fc91a953ffc3d02ecd
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