Cargando…

Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms

Clonal proliferation in myeloproliferative neoplasms (MPN) is driven by somatic mutations in JAK2, CALR or MPL, but the contribution of inherited factors is poorly characterized. Using a three-stage genome-wide association study of 3,437 MPN cases and 10,083 controls, we identify two SNPs with genom...

Descripción completa

Detalles Bibliográficos
Autores principales: Tapper, William, Jones, Amy V., Kralovics, Robert, Harutyunyan, Ashot S., Zoi, Katerina, Leung, William, Godfrey, Anna L., Guglielmelli, Paola, Callaway, Alison, Ward, Daniel, Aranaz, Paula, White, Helen E., Waghorn, Katherine, Lin, Feng, Chase, Andrew, Joanna Baxter, E., Maclean, Cathy, Nangalia, Jyoti, Chen, Edwin, Evans, Paul, Short, Michael, Jack, Andrew, Wallis, Louise, Oscier, David, Duncombe, Andrew S., Schuh, Anna, Mead, Adam J., Griffiths, Michael, Ewing, Joanne, Gale, Rosemary E., Schnittger, Susanne, Haferlach, Torsten, Stegelmann, Frank, Döhner, Konstanze, Grallert, Harald, Strauch, Konstantin, Tanaka, Toshiko, Bandinelli, Stefania, Giannopoulos, Andreas, Pieri, Lisa, Mannarelli, Carmela, Gisslinger, Heinz, Barosi, Giovanni, Cazzola, Mario, Reiter, Andreas, Harrison, Claire, Campbell, Peter, Green, Anthony R., Vannucchi, Alessandro, Cross, Nicholas C.P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4396373/
https://www.ncbi.nlm.nih.gov/pubmed/25849990
http://dx.doi.org/10.1038/ncomms7691
_version_ 1782366566529105920
author Tapper, William
Jones, Amy V.
Kralovics, Robert
Harutyunyan, Ashot S.
Zoi, Katerina
Leung, William
Godfrey, Anna L.
Guglielmelli, Paola
Callaway, Alison
Ward, Daniel
Aranaz, Paula
White, Helen E.
Waghorn, Katherine
Lin, Feng
Chase, Andrew
Joanna Baxter, E.
Maclean, Cathy
Nangalia, Jyoti
Chen, Edwin
Evans, Paul
Short, Michael
Jack, Andrew
Wallis, Louise
Oscier, David
Duncombe, Andrew S.
Schuh, Anna
Mead, Adam J.
Griffiths, Michael
Ewing, Joanne
Gale, Rosemary E.
Schnittger, Susanne
Haferlach, Torsten
Stegelmann, Frank
Döhner, Konstanze
Grallert, Harald
Strauch, Konstantin
Tanaka, Toshiko
Bandinelli, Stefania
Giannopoulos, Andreas
Pieri, Lisa
Mannarelli, Carmela
Gisslinger, Heinz
Barosi, Giovanni
Cazzola, Mario
Reiter, Andreas
Harrison, Claire
Campbell, Peter
Green, Anthony R.
Vannucchi, Alessandro
Cross, Nicholas C.P.
author_facet Tapper, William
Jones, Amy V.
Kralovics, Robert
Harutyunyan, Ashot S.
Zoi, Katerina
Leung, William
Godfrey, Anna L.
Guglielmelli, Paola
Callaway, Alison
Ward, Daniel
Aranaz, Paula
White, Helen E.
Waghorn, Katherine
Lin, Feng
Chase, Andrew
Joanna Baxter, E.
Maclean, Cathy
Nangalia, Jyoti
Chen, Edwin
Evans, Paul
Short, Michael
Jack, Andrew
Wallis, Louise
Oscier, David
Duncombe, Andrew S.
Schuh, Anna
Mead, Adam J.
Griffiths, Michael
Ewing, Joanne
Gale, Rosemary E.
Schnittger, Susanne
Haferlach, Torsten
Stegelmann, Frank
Döhner, Konstanze
Grallert, Harald
Strauch, Konstantin
Tanaka, Toshiko
Bandinelli, Stefania
Giannopoulos, Andreas
Pieri, Lisa
Mannarelli, Carmela
Gisslinger, Heinz
Barosi, Giovanni
Cazzola, Mario
Reiter, Andreas
Harrison, Claire
Campbell, Peter
Green, Anthony R.
Vannucchi, Alessandro
Cross, Nicholas C.P.
author_sort Tapper, William
collection PubMed
description Clonal proliferation in myeloproliferative neoplasms (MPN) is driven by somatic mutations in JAK2, CALR or MPL, but the contribution of inherited factors is poorly characterized. Using a three-stage genome-wide association study of 3,437 MPN cases and 10,083 controls, we identify two SNPs with genome-wide significance in JAK2(V617F)-negative MPN: rs12339666 (JAK2; meta-analysis P=1.27 × 10(−10)) and rs2201862 (MECOM; meta-analysis P=1.96 × 10(−9)). Two additional SNPs, rs2736100 (TERT) and rs9376092 (HBS1L/MYB), achieve genome-wide significance when including JAK2(V617F)-positive cases. rs9376092 has a stronger effect in JAK2(V617F)-negative cases with CALR and/or MPL mutations (Breslow–Day P=4.5 × 10(−7)), whereas in JAK2(V617F)-positive cases rs9376092 associates with essential thrombocythemia (ET) rather than polycythemia vera (allelic χ(2) P=7.3 × 10(−7)). Reduced MYB expression, previously linked to development of an ET-like disease in model systems, associates with rs9376092 in normal myeloid cells. These findings demonstrate that multiple germline variants predispose to MPN and link constitutional differences in MYB expression to disease phenotype.
format Online
Article
Text
id pubmed-4396373
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-43963732015-04-24 Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms Tapper, William Jones, Amy V. Kralovics, Robert Harutyunyan, Ashot S. Zoi, Katerina Leung, William Godfrey, Anna L. Guglielmelli, Paola Callaway, Alison Ward, Daniel Aranaz, Paula White, Helen E. Waghorn, Katherine Lin, Feng Chase, Andrew Joanna Baxter, E. Maclean, Cathy Nangalia, Jyoti Chen, Edwin Evans, Paul Short, Michael Jack, Andrew Wallis, Louise Oscier, David Duncombe, Andrew S. Schuh, Anna Mead, Adam J. Griffiths, Michael Ewing, Joanne Gale, Rosemary E. Schnittger, Susanne Haferlach, Torsten Stegelmann, Frank Döhner, Konstanze Grallert, Harald Strauch, Konstantin Tanaka, Toshiko Bandinelli, Stefania Giannopoulos, Andreas Pieri, Lisa Mannarelli, Carmela Gisslinger, Heinz Barosi, Giovanni Cazzola, Mario Reiter, Andreas Harrison, Claire Campbell, Peter Green, Anthony R. Vannucchi, Alessandro Cross, Nicholas C.P. Nat Commun Article Clonal proliferation in myeloproliferative neoplasms (MPN) is driven by somatic mutations in JAK2, CALR or MPL, but the contribution of inherited factors is poorly characterized. Using a three-stage genome-wide association study of 3,437 MPN cases and 10,083 controls, we identify two SNPs with genome-wide significance in JAK2(V617F)-negative MPN: rs12339666 (JAK2; meta-analysis P=1.27 × 10(−10)) and rs2201862 (MECOM; meta-analysis P=1.96 × 10(−9)). Two additional SNPs, rs2736100 (TERT) and rs9376092 (HBS1L/MYB), achieve genome-wide significance when including JAK2(V617F)-positive cases. rs9376092 has a stronger effect in JAK2(V617F)-negative cases with CALR and/or MPL mutations (Breslow–Day P=4.5 × 10(−7)), whereas in JAK2(V617F)-positive cases rs9376092 associates with essential thrombocythemia (ET) rather than polycythemia vera (allelic χ(2) P=7.3 × 10(−7)). Reduced MYB expression, previously linked to development of an ET-like disease in model systems, associates with rs9376092 in normal myeloid cells. These findings demonstrate that multiple germline variants predispose to MPN and link constitutional differences in MYB expression to disease phenotype. Nature Publishing Group 2015-04-07 /pmc/articles/PMC4396373/ /pubmed/25849990 http://dx.doi.org/10.1038/ncomms7691 Text en Copyright © 2015, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/)
spellingShingle Article
Tapper, William
Jones, Amy V.
Kralovics, Robert
Harutyunyan, Ashot S.
Zoi, Katerina
Leung, William
Godfrey, Anna L.
Guglielmelli, Paola
Callaway, Alison
Ward, Daniel
Aranaz, Paula
White, Helen E.
Waghorn, Katherine
Lin, Feng
Chase, Andrew
Joanna Baxter, E.
Maclean, Cathy
Nangalia, Jyoti
Chen, Edwin
Evans, Paul
Short, Michael
Jack, Andrew
Wallis, Louise
Oscier, David
Duncombe, Andrew S.
Schuh, Anna
Mead, Adam J.
Griffiths, Michael
Ewing, Joanne
Gale, Rosemary E.
Schnittger, Susanne
Haferlach, Torsten
Stegelmann, Frank
Döhner, Konstanze
Grallert, Harald
Strauch, Konstantin
Tanaka, Toshiko
Bandinelli, Stefania
Giannopoulos, Andreas
Pieri, Lisa
Mannarelli, Carmela
Gisslinger, Heinz
Barosi, Giovanni
Cazzola, Mario
Reiter, Andreas
Harrison, Claire
Campbell, Peter
Green, Anthony R.
Vannucchi, Alessandro
Cross, Nicholas C.P.
Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title_full Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title_fullStr Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title_full_unstemmed Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title_short Genetic variation at MECOM, TERT, JAK2 and HBS1L-MYB predisposes to myeloproliferative neoplasms
title_sort genetic variation at mecom, tert, jak2 and hbs1l-myb predisposes to myeloproliferative neoplasms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4396373/
https://www.ncbi.nlm.nih.gov/pubmed/25849990
http://dx.doi.org/10.1038/ncomms7691
work_keys_str_mv AT tapperwilliam geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT jonesamyv geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT kralovicsrobert geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT harutyunyanashots geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT zoikaterina geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT leungwilliam geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT godfreyannal geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT guglielmellipaola geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT callawayalison geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT warddaniel geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT aranazpaula geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT whitehelene geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT waghornkatherine geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT linfeng geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT chaseandrew geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT joannabaxtere geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT macleancathy geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT nangaliajyoti geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT chenedwin geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT evanspaul geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT shortmichael geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT jackandrew geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT wallislouise geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT oscierdavid geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT duncombeandrews geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT schuhanna geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT meadadamj geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT griffithsmichael geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT ewingjoanne geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT galerosemarye geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT schnittgersusanne geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT haferlachtorsten geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT stegelmannfrank geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT dohnerkonstanze geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT grallertharald geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT strauchkonstantin geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT tanakatoshiko geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT bandinellistefania geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT giannopoulosandreas geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT pierilisa geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT mannarellicarmela geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT gisslingerheinz geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT barosigiovanni geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT cazzolamario geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT reiterandreas geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT harrisonclaire geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT campbellpeter geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT greenanthonyr geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT vannucchialessandro geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms
AT crossnicholascp geneticvariationatmecomtertjak2andhbs1lmybpredisposestomyeloproliferativeneoplasms