Integrative genomic and transcriptomic analysis of leiomyosarcoma

The molecular genetic landscape of leiomyosarcoma (LMS) is largely unknown. Here, the authors identify frequent DNA copy number alterations, whole-genome duplication, TP53 and RB1 inactivation, alternative telomere lengthening, and genomic imprints of defective DNA repair via homologous recombinatio...

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Autores principales: Priya Chudasama, Sadaf S. Mughal, Mathijs A. Sanders, Daniel Hübschmann, Inn Chung, Katharina I. Deeg, Siao-Han Wong, Sophie Rabe, Mario Hlevnjak, Marc Zapatka, Aurélie Ernst, Kortine Kleinheinz, Matthias Schlesner, Lina Sieverling, Barbara Klink, Evelin Schröck, Remco M. Hoogenboezem, Bernd Kasper, Christoph E. Heilig, Gerlinde Egerer, Stephan Wolf, Christof von Kalle, Roland Eils, Albrecht Stenzinger, Wilko Weichert, Hanno Glimm, Stefan Gröschel, Hans-Georg Kopp, Georg Omlor, Burkhard Lehner, Sebastian Bauer, Simon Schimmack, Alexis Ulrich, Gunhild Mechtersheimer, Karsten Rippe, Benedikt Brors, Barbara Hutter, Marcus Renner, Peter Hohenberger, Claudia Scholl, Stefan Fröhling
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Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/d4d8c497353f4a34a7f3673b1d82cb28
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spelling oai:doaj.org-article:d4d8c497353f4a34a7f3673b1d82cb282021-12-02T14:40:05ZIntegrative genomic and transcriptomic analysis of leiomyosarcoma10.1038/s41467-017-02602-02041-1723https://doaj.org/article/d4d8c497353f4a34a7f3673b1d82cb282018-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-02602-0https://doaj.org/toc/2041-1723The molecular genetic landscape of leiomyosarcoma (LMS) is largely unknown. Here, the authors identify frequent DNA copy number alterations, whole-genome duplication, TP53 and RB1 inactivation, alternative telomere lengthening, and genomic imprints of defective DNA repair via homologous recombination as a potential therapeutic target in LMS patients.Priya ChudasamaSadaf S. MughalMathijs A. SandersDaniel HübschmannInn ChungKatharina I. DeegSiao-Han WongSophie RabeMario HlevnjakMarc ZapatkaAurélie ErnstKortine KleinheinzMatthias SchlesnerLina SieverlingBarbara KlinkEvelin SchröckRemco M. HoogenboezemBernd KasperChristoph E. HeiligGerlinde EgererStephan WolfChristof von KalleRoland EilsAlbrecht StenzingerWilko WeichertHanno GlimmStefan GröschelHans-Georg KoppGeorg OmlorBurkhard LehnerSebastian BauerSimon SchimmackAlexis UlrichGunhild MechtersheimerKarsten RippeBenedikt BrorsBarbara HutterMarcus RennerPeter HohenbergerClaudia SchollStefan FröhlingNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Priya Chudasama
Sadaf S. Mughal
Mathijs A. Sanders
Daniel Hübschmann
Inn Chung
Katharina I. Deeg
Siao-Han Wong
Sophie Rabe
Mario Hlevnjak
Marc Zapatka
Aurélie Ernst
Kortine Kleinheinz
Matthias Schlesner
Lina Sieverling
Barbara Klink
Evelin Schröck
Remco M. Hoogenboezem
Bernd Kasper
Christoph E. Heilig
Gerlinde Egerer
Stephan Wolf
Christof von Kalle
Roland Eils
Albrecht Stenzinger
Wilko Weichert
Hanno Glimm
Stefan Gröschel
Hans-Georg Kopp
Georg Omlor
Burkhard Lehner
Sebastian Bauer
Simon Schimmack
Alexis Ulrich
Gunhild Mechtersheimer
Karsten Rippe
Benedikt Brors
Barbara Hutter
Marcus Renner
Peter Hohenberger
Claudia Scholl
Stefan Fröhling
Integrative genomic and transcriptomic analysis of leiomyosarcoma
description The molecular genetic landscape of leiomyosarcoma (LMS) is largely unknown. Here, the authors identify frequent DNA copy number alterations, whole-genome duplication, TP53 and RB1 inactivation, alternative telomere lengthening, and genomic imprints of defective DNA repair via homologous recombination as a potential therapeutic target in LMS patients.
format article
author Priya Chudasama
Sadaf S. Mughal
Mathijs A. Sanders
Daniel Hübschmann
Inn Chung
Katharina I. Deeg
Siao-Han Wong
Sophie Rabe
Mario Hlevnjak
Marc Zapatka
Aurélie Ernst
Kortine Kleinheinz
Matthias Schlesner
Lina Sieverling
Barbara Klink
Evelin Schröck
Remco M. Hoogenboezem
Bernd Kasper
Christoph E. Heilig
Gerlinde Egerer
Stephan Wolf
Christof von Kalle
Roland Eils
Albrecht Stenzinger
Wilko Weichert
Hanno Glimm
Stefan Gröschel
Hans-Georg Kopp
Georg Omlor
Burkhard Lehner
Sebastian Bauer
Simon Schimmack
Alexis Ulrich
Gunhild Mechtersheimer
Karsten Rippe
Benedikt Brors
Barbara Hutter
Marcus Renner
Peter Hohenberger
Claudia Scholl
Stefan Fröhling
author_facet Priya Chudasama
Sadaf S. Mughal
Mathijs A. Sanders
Daniel Hübschmann
Inn Chung
Katharina I. Deeg
Siao-Han Wong
Sophie Rabe
Mario Hlevnjak
Marc Zapatka
Aurélie Ernst
Kortine Kleinheinz
Matthias Schlesner
Lina Sieverling
Barbara Klink
Evelin Schröck
Remco M. Hoogenboezem
Bernd Kasper
Christoph E. Heilig
Gerlinde Egerer
Stephan Wolf
Christof von Kalle
Roland Eils
Albrecht Stenzinger
Wilko Weichert
Hanno Glimm
Stefan Gröschel
Hans-Georg Kopp
Georg Omlor
Burkhard Lehner
Sebastian Bauer
Simon Schimmack
Alexis Ulrich
Gunhild Mechtersheimer
Karsten Rippe
Benedikt Brors
Barbara Hutter
Marcus Renner
Peter Hohenberger
Claudia Scholl
Stefan Fröhling
author_sort Priya Chudasama
title Integrative genomic and transcriptomic analysis of leiomyosarcoma
title_short Integrative genomic and transcriptomic analysis of leiomyosarcoma
title_full Integrative genomic and transcriptomic analysis of leiomyosarcoma
title_fullStr Integrative genomic and transcriptomic analysis of leiomyosarcoma
title_full_unstemmed Integrative genomic and transcriptomic analysis of leiomyosarcoma
title_sort integrative genomic and transcriptomic analysis of leiomyosarcoma
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/d4d8c497353f4a34a7f3673b1d82cb28
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