H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients

Therapy-induced senescence reflects a biological effector principle that is underrecognized in lesion-focused cancer precision medicine. Here the authors utilize mouse lymphoma genetics to functionally dissect senescence and cross-species apply a novel senescence-based prognosticator to lymphoma pat...

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Autores principales: Kolja Schleich, Julia Kase, Jan R. Dörr, Saskia Trescher, Animesh Bhattacharya, Yong Yu, Elizabeth M. Wailes, Dorothy N. Y. Fan, Philipp Lohneis, Maja Milanovic, Andrea Lau, Dido Lenze, Michael Hummel, Bjoern Chapuy, Ulf Leser, Maurice Reimann, Soyoung Lee, Clemens A. Schmitt
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/05c76f30d3fb41ad9a1c454ca0327848
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spelling oai:doaj.org-article:05c76f30d3fb41ad9a1c454ca03278482021-12-02T17:55:10ZH3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients10.1038/s41467-020-17467-z2041-1723https://doaj.org/article/05c76f30d3fb41ad9a1c454ca03278482020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17467-zhttps://doaj.org/toc/2041-1723Therapy-induced senescence reflects a biological effector principle that is underrecognized in lesion-focused cancer precision medicine. Here the authors utilize mouse lymphoma genetics to functionally dissect senescence and cross-species apply a novel senescence-based prognosticator to lymphoma patients.Kolja SchleichJulia KaseJan R. DörrSaskia TrescherAnimesh BhattacharyaYong YuElizabeth M. WailesDorothy N. Y. FanPhilipp LohneisMaja MilanovicAndrea LauDido LenzeMichael HummelBjoern ChapuyUlf LeserMaurice ReimannSoyoung LeeClemens A. SchmittNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kolja Schleich
Julia Kase
Jan R. Dörr
Saskia Trescher
Animesh Bhattacharya
Yong Yu
Elizabeth M. Wailes
Dorothy N. Y. Fan
Philipp Lohneis
Maja Milanovic
Andrea Lau
Dido Lenze
Michael Hummel
Bjoern Chapuy
Ulf Leser
Maurice Reimann
Soyoung Lee
Clemens A. Schmitt
H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
description Therapy-induced senescence reflects a biological effector principle that is underrecognized in lesion-focused cancer precision medicine. Here the authors utilize mouse lymphoma genetics to functionally dissect senescence and cross-species apply a novel senescence-based prognosticator to lymphoma patients.
format article
author Kolja Schleich
Julia Kase
Jan R. Dörr
Saskia Trescher
Animesh Bhattacharya
Yong Yu
Elizabeth M. Wailes
Dorothy N. Y. Fan
Philipp Lohneis
Maja Milanovic
Andrea Lau
Dido Lenze
Michael Hummel
Bjoern Chapuy
Ulf Leser
Maurice Reimann
Soyoung Lee
Clemens A. Schmitt
author_facet Kolja Schleich
Julia Kase
Jan R. Dörr
Saskia Trescher
Animesh Bhattacharya
Yong Yu
Elizabeth M. Wailes
Dorothy N. Y. Fan
Philipp Lohneis
Maja Milanovic
Andrea Lau
Dido Lenze
Michael Hummel
Bjoern Chapuy
Ulf Leser
Maurice Reimann
Soyoung Lee
Clemens A. Schmitt
author_sort Kolja Schleich
title H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
title_short H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
title_full H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
title_fullStr H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
title_full_unstemmed H3K9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
title_sort h3k9me3-mediated epigenetic regulation of senescence in mice predicts outcome of lymphoma patients
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/05c76f30d3fb41ad9a1c454ca0327848
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