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Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms

Perturbations to the epigenome are known drivers of tumorigenesis. In melanoma, alterations in histone methyltransferases that catalyze methylation at histone 3 lysine 9 and histone 3 lysine 27—two sites of critical post-translational modification—have been reported. To study the function of these m...

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Autores principales: DiNapoli, Sara E., Martinez-McFaline, Raúl, Shen, Hao, Doane, Ashley S., Perez, Alexendar R., Verma, Akanksha, Simon, Amanda, Nelson, Isabel, Balgobin, Courtney A., Bourque, Caitlin T., Yao, Jun, Raman, Renuka, Béguelin, Wendy, Zippin, Jonathan H., Elemento, Olivier, Melnick, Ari M., Houvras, Yariv
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8866878/
https://www.ncbi.nlm.nih.gov/pubmed/35223844
http://dx.doi.org/10.3389/fcell.2022.814216
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author DiNapoli, Sara E.
Martinez-McFaline, Raúl
Shen, Hao
Doane, Ashley S.
Perez, Alexendar R.
Verma, Akanksha
Simon, Amanda
Nelson, Isabel
Balgobin, Courtney A.
Bourque, Caitlin T.
Yao, Jun
Raman, Renuka
Béguelin, Wendy
Zippin, Jonathan H.
Elemento, Olivier
Melnick, Ari M.
Houvras, Yariv
author_facet DiNapoli, Sara E.
Martinez-McFaline, Raúl
Shen, Hao
Doane, Ashley S.
Perez, Alexendar R.
Verma, Akanksha
Simon, Amanda
Nelson, Isabel
Balgobin, Courtney A.
Bourque, Caitlin T.
Yao, Jun
Raman, Renuka
Béguelin, Wendy
Zippin, Jonathan H.
Elemento, Olivier
Melnick, Ari M.
Houvras, Yariv
author_sort DiNapoli, Sara E.
collection PubMed
description Perturbations to the epigenome are known drivers of tumorigenesis. In melanoma, alterations in histone methyltransferases that catalyze methylation at histone 3 lysine 9 and histone 3 lysine 27—two sites of critical post-translational modification—have been reported. To study the function of these methyltransferases in melanoma, we engineered melanocytes to express histone 3 lysine-to-methionine mutations at lysine 9 and lysine 27, which are known to inhibit the activity of histone methyltransferases, in a zebrafish melanoma model. Using this system, we found that loss of histone 3 lysine 9 methylation dramatically suppressed melanoma formation and that inhibition of histone 3 lysine 9 methyltransferases in human melanoma cells increased innate immune response signatures. In contrast, loss of histone 3 lysine 27 methylation significantly accelerated melanoma formation. We identified FOXD1 as a top target of PRC2 that is silenced in melanocytes and found that aberrant overexpression of FOXD1 accelerated melanoma onset. Collectively, these data demonstrate how histone 3 lysine-to-methionine mutations can be used to uncover critical roles for methyltransferases.
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spelling pubmed-88668782022-02-25 Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms DiNapoli, Sara E. Martinez-McFaline, Raúl Shen, Hao Doane, Ashley S. Perez, Alexendar R. Verma, Akanksha Simon, Amanda Nelson, Isabel Balgobin, Courtney A. Bourque, Caitlin T. Yao, Jun Raman, Renuka Béguelin, Wendy Zippin, Jonathan H. Elemento, Olivier Melnick, Ari M. Houvras, Yariv Front Cell Dev Biol Cell and Developmental Biology Perturbations to the epigenome are known drivers of tumorigenesis. In melanoma, alterations in histone methyltransferases that catalyze methylation at histone 3 lysine 9 and histone 3 lysine 27—two sites of critical post-translational modification—have been reported. To study the function of these methyltransferases in melanoma, we engineered melanocytes to express histone 3 lysine-to-methionine mutations at lysine 9 and lysine 27, which are known to inhibit the activity of histone methyltransferases, in a zebrafish melanoma model. Using this system, we found that loss of histone 3 lysine 9 methylation dramatically suppressed melanoma formation and that inhibition of histone 3 lysine 9 methyltransferases in human melanoma cells increased innate immune response signatures. In contrast, loss of histone 3 lysine 27 methylation significantly accelerated melanoma formation. We identified FOXD1 as a top target of PRC2 that is silenced in melanocytes and found that aberrant overexpression of FOXD1 accelerated melanoma onset. Collectively, these data demonstrate how histone 3 lysine-to-methionine mutations can be used to uncover critical roles for methyltransferases. Frontiers Media S.A. 2022-02-10 /pmc/articles/PMC8866878/ /pubmed/35223844 http://dx.doi.org/10.3389/fcell.2022.814216 Text en Copyright © 2022 DiNapoli, Martinez-McFaline, Shen, Doane, Perez, Verma, Simon, Nelson, Balgobin, Bourque, Yao, Raman, Béguelin, Zippin, Elemento, Melnick and Houvras. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
DiNapoli, Sara E.
Martinez-McFaline, Raúl
Shen, Hao
Doane, Ashley S.
Perez, Alexendar R.
Verma, Akanksha
Simon, Amanda
Nelson, Isabel
Balgobin, Courtney A.
Bourque, Caitlin T.
Yao, Jun
Raman, Renuka
Béguelin, Wendy
Zippin, Jonathan H.
Elemento, Olivier
Melnick, Ari M.
Houvras, Yariv
Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title_full Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title_fullStr Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title_full_unstemmed Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title_short Histone 3 Methyltransferases Alter Melanoma Initiation and Progression Through Discrete Mechanisms
title_sort histone 3 methyltransferases alter melanoma initiation and progression through discrete mechanisms
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8866878/
https://www.ncbi.nlm.nih.gov/pubmed/35223844
http://dx.doi.org/10.3389/fcell.2022.814216
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