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Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy

BACKGROUND. Sporadic vascular malformations (VMs) are complex congenital anomalies of blood vessels that lead to stroke, life-threatening bleeds, disfigurement, overgrowth, and/or pain. Therapeutic options are severely limited, and multidisciplinary management remains challenging, particularly for h...

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Autores principales: Al-Olabi, Lara, Polubothu, Satyamaanasa, Dowsett, Katherine, Andrews, Katrina A., Stadnik, Paulina, Joseph, Agnel P., Knox, Rachel, Pittman, Alan, Clark, Graeme, Baird, William, Bulstrode, Neil, Glover, Mary, Gordon, Kristiana, Hargrave, Darren, Huson, Susan M., Jacques, Thomas S., James, Gregory, Kondolf, Hannah, Kangesu, Loshan, Keppler-Noreuil, Kim M., Khan, Amjad, Lindhurst, Marjorie J., Lipson, Mark, Mansour, Sahar, O’Hara, Justine, Mahon, Caroline, Mosica, Anda, Moss, Celia, Murthy, Aditi, Ong, Juling, Parker, Victoria E., Rivière, Jean-Baptiste, Sapp, Julie C., Sebire, Neil J., Shah, Rahul, Sivakumar, Branavan, Thomas, Anna, Virasami, Alex, Waelchli, Regula, Zeng, Zhiqiang, Biesecker, Leslie G., Barnacle, Alex, Topf, Maya, Semple, Robert K., Patton, E. Elizabeth, Kinsler, Veronica A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873857/
https://www.ncbi.nlm.nih.gov/pubmed/29461977
http://dx.doi.org/10.1172/JCI98589
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author Al-Olabi, Lara
Polubothu, Satyamaanasa
Dowsett, Katherine
Andrews, Katrina A.
Stadnik, Paulina
Joseph, Agnel P.
Knox, Rachel
Pittman, Alan
Clark, Graeme
Baird, William
Bulstrode, Neil
Glover, Mary
Gordon, Kristiana
Hargrave, Darren
Huson, Susan M.
Jacques, Thomas S.
James, Gregory
Kondolf, Hannah
Kangesu, Loshan
Keppler-Noreuil, Kim M.
Khan, Amjad
Lindhurst, Marjorie J.
Lipson, Mark
Mansour, Sahar
O’Hara, Justine
Mahon, Caroline
Mosica, Anda
Moss, Celia
Murthy, Aditi
Ong, Juling
Parker, Victoria E.
Rivière, Jean-Baptiste
Sapp, Julie C.
Sebire, Neil J.
Shah, Rahul
Sivakumar, Branavan
Thomas, Anna
Virasami, Alex
Waelchli, Regula
Zeng, Zhiqiang
Biesecker, Leslie G.
Barnacle, Alex
Topf, Maya
Semple, Robert K.
Patton, E. Elizabeth
Kinsler, Veronica A.
author_facet Al-Olabi, Lara
Polubothu, Satyamaanasa
Dowsett, Katherine
Andrews, Katrina A.
Stadnik, Paulina
Joseph, Agnel P.
Knox, Rachel
Pittman, Alan
Clark, Graeme
Baird, William
Bulstrode, Neil
Glover, Mary
Gordon, Kristiana
Hargrave, Darren
Huson, Susan M.
Jacques, Thomas S.
James, Gregory
Kondolf, Hannah
Kangesu, Loshan
Keppler-Noreuil, Kim M.
Khan, Amjad
Lindhurst, Marjorie J.
Lipson, Mark
Mansour, Sahar
O’Hara, Justine
Mahon, Caroline
Mosica, Anda
Moss, Celia
Murthy, Aditi
Ong, Juling
Parker, Victoria E.
Rivière, Jean-Baptiste
Sapp, Julie C.
Sebire, Neil J.
Shah, Rahul
Sivakumar, Branavan
Thomas, Anna
Virasami, Alex
Waelchli, Regula
Zeng, Zhiqiang
Biesecker, Leslie G.
Barnacle, Alex
Topf, Maya
Semple, Robert K.
Patton, E. Elizabeth
Kinsler, Veronica A.
author_sort Al-Olabi, Lara
collection PubMed
description BACKGROUND. Sporadic vascular malformations (VMs) are complex congenital anomalies of blood vessels that lead to stroke, life-threatening bleeds, disfigurement, overgrowth, and/or pain. Therapeutic options are severely limited, and multidisciplinary management remains challenging, particularly for high-flow arteriovenous malformations (AVM). METHODS. To investigate the pathogenesis of sporadic intracranial and extracranial VMs in 160 children in which known genetic causes had been excluded, we sequenced DNA from affected tissue and optimized analysis for detection of low mutant allele frequency. RESULTS. We discovered multiple mosaic-activating variants in 4 genes of the RAS/MAPK pathway, KRAS, NRAS, BRAF, and MAP2K1, a pathway commonly activated in cancer and responsible for the germline RAS-opathies. These variants were more frequent in high-flow than low-flow VMs. In vitro characterization and 2 transgenic zebrafish AVM models that recapitulated the human phenotype validated the pathogenesis of the mutant alleles. Importantly, treatment of AVM-BRAF mutant zebrafish with the BRAF inhibitor vemurafinib restored blood flow in AVM. CONCLUSION. Our findings uncover a major cause of sporadic VMs of different clinical types and thereby offer the potential of personalized medical treatment by repurposing existing licensed cancer therapies. FUNDING. This work was funded or supported by grants from the AVM Butterfly Charity, the Wellcome Trust (UK), the Medical Research Council (UK), the UK National Institute for Health Research, the L’Oreal-Melanoma Research Alliance, the European Research Council, and the National Human Genome Research Institute (US).
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spelling pubmed-58738572018-04-05 Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy Al-Olabi, Lara Polubothu, Satyamaanasa Dowsett, Katherine Andrews, Katrina A. Stadnik, Paulina Joseph, Agnel P. Knox, Rachel Pittman, Alan Clark, Graeme Baird, William Bulstrode, Neil Glover, Mary Gordon, Kristiana Hargrave, Darren Huson, Susan M. Jacques, Thomas S. James, Gregory Kondolf, Hannah Kangesu, Loshan Keppler-Noreuil, Kim M. Khan, Amjad Lindhurst, Marjorie J. Lipson, Mark Mansour, Sahar O’Hara, Justine Mahon, Caroline Mosica, Anda Moss, Celia Murthy, Aditi Ong, Juling Parker, Victoria E. Rivière, Jean-Baptiste Sapp, Julie C. Sebire, Neil J. Shah, Rahul Sivakumar, Branavan Thomas, Anna Virasami, Alex Waelchli, Regula Zeng, Zhiqiang Biesecker, Leslie G. Barnacle, Alex Topf, Maya Semple, Robert K. Patton, E. Elizabeth Kinsler, Veronica A. J Clin Invest Clinical Medicine BACKGROUND. Sporadic vascular malformations (VMs) are complex congenital anomalies of blood vessels that lead to stroke, life-threatening bleeds, disfigurement, overgrowth, and/or pain. Therapeutic options are severely limited, and multidisciplinary management remains challenging, particularly for high-flow arteriovenous malformations (AVM). METHODS. To investigate the pathogenesis of sporadic intracranial and extracranial VMs in 160 children in which known genetic causes had been excluded, we sequenced DNA from affected tissue and optimized analysis for detection of low mutant allele frequency. RESULTS. We discovered multiple mosaic-activating variants in 4 genes of the RAS/MAPK pathway, KRAS, NRAS, BRAF, and MAP2K1, a pathway commonly activated in cancer and responsible for the germline RAS-opathies. These variants were more frequent in high-flow than low-flow VMs. In vitro characterization and 2 transgenic zebrafish AVM models that recapitulated the human phenotype validated the pathogenesis of the mutant alleles. Importantly, treatment of AVM-BRAF mutant zebrafish with the BRAF inhibitor vemurafinib restored blood flow in AVM. CONCLUSION. Our findings uncover a major cause of sporadic VMs of different clinical types and thereby offer the potential of personalized medical treatment by repurposing existing licensed cancer therapies. FUNDING. This work was funded or supported by grants from the AVM Butterfly Charity, the Wellcome Trust (UK), the Medical Research Council (UK), the UK National Institute for Health Research, the L’Oreal-Melanoma Research Alliance, the European Research Council, and the National Human Genome Research Institute (US). American Society for Clinical Investigation 2018-03-12 2018-04-02 /pmc/articles/PMC5873857/ /pubmed/29461977 http://dx.doi.org/10.1172/JCI98589 Text en Copyright © 2018 Al-Olabi et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Clinical Medicine
Al-Olabi, Lara
Polubothu, Satyamaanasa
Dowsett, Katherine
Andrews, Katrina A.
Stadnik, Paulina
Joseph, Agnel P.
Knox, Rachel
Pittman, Alan
Clark, Graeme
Baird, William
Bulstrode, Neil
Glover, Mary
Gordon, Kristiana
Hargrave, Darren
Huson, Susan M.
Jacques, Thomas S.
James, Gregory
Kondolf, Hannah
Kangesu, Loshan
Keppler-Noreuil, Kim M.
Khan, Amjad
Lindhurst, Marjorie J.
Lipson, Mark
Mansour, Sahar
O’Hara, Justine
Mahon, Caroline
Mosica, Anda
Moss, Celia
Murthy, Aditi
Ong, Juling
Parker, Victoria E.
Rivière, Jean-Baptiste
Sapp, Julie C.
Sebire, Neil J.
Shah, Rahul
Sivakumar, Branavan
Thomas, Anna
Virasami, Alex
Waelchli, Regula
Zeng, Zhiqiang
Biesecker, Leslie G.
Barnacle, Alex
Topf, Maya
Semple, Robert K.
Patton, E. Elizabeth
Kinsler, Veronica A.
Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title_full Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title_fullStr Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title_full_unstemmed Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title_short Mosaic RAS/MAPK variants cause sporadic vascular malformations which respond to targeted therapy
title_sort mosaic ras/mapk variants cause sporadic vascular malformations which respond to targeted therapy
topic Clinical Medicine
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873857/
https://www.ncbi.nlm.nih.gov/pubmed/29461977
http://dx.doi.org/10.1172/JCI98589
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