Environmental arginine controls multinuclear giant cell metabolism and formation
Multinucleated giant cells (MGCs) are important in the pathogenesis of various diseases. Here, the authors demonstrate that extracellular presence of the amino acid arginine is required for MGC formation and metabolism, suggesting a translational impact for strategies utilizing systemic arginine dep...
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Nature Portfolio
2020
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oai:doaj.org-article:28055bd4c7454a9b869483a12530bfc22021-12-02T15:39:25ZEnvironmental arginine controls multinuclear giant cell metabolism and formation10.1038/s41467-020-14285-12041-1723https://doaj.org/article/28055bd4c7454a9b869483a12530bfc22020-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14285-1https://doaj.org/toc/2041-1723Multinucleated giant cells (MGCs) are important in the pathogenesis of various diseases. Here, the authors demonstrate that extracellular presence of the amino acid arginine is required for MGC formation and metabolism, suggesting a translational impact for strategies utilizing systemic arginine depletion in MGC-mediated diseases.Julia S. BrunnerLoan VulliardMelanie HofmannMarkus KielerAlexander LercherAndrea VogelMarion RussierJohanna B. BrüggenthiesMartina KerndlVictoria SaferdingBirgit NiederreiterAlexandra JunzaAnnika FrauensteinCarina ScholtysekYohei MikamiKristaps KlavinsGerhard KrönkeAndreas BergthalerJohn J. O’SheaThomas WeichhartFelix MeissnerJosef S. SmolenPaul ChengOscar YanesJörg MenchePeter J. MurrayOmar SharifStephan BlümlGernot SchabbauerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020) |
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Science Q Julia S. Brunner Loan Vulliard Melanie Hofmann Markus Kieler Alexander Lercher Andrea Vogel Marion Russier Johanna B. Brüggenthies Martina Kerndl Victoria Saferding Birgit Niederreiter Alexandra Junza Annika Frauenstein Carina Scholtysek Yohei Mikami Kristaps Klavins Gerhard Krönke Andreas Bergthaler John J. O’Shea Thomas Weichhart Felix Meissner Josef S. Smolen Paul Cheng Oscar Yanes Jörg Menche Peter J. Murray Omar Sharif Stephan Blüml Gernot Schabbauer Environmental arginine controls multinuclear giant cell metabolism and formation |
description |
Multinucleated giant cells (MGCs) are important in the pathogenesis of various diseases. Here, the authors demonstrate that extracellular presence of the amino acid arginine is required for MGC formation and metabolism, suggesting a translational impact for strategies utilizing systemic arginine depletion in MGC-mediated diseases. |
format |
article |
author |
Julia S. Brunner Loan Vulliard Melanie Hofmann Markus Kieler Alexander Lercher Andrea Vogel Marion Russier Johanna B. Brüggenthies Martina Kerndl Victoria Saferding Birgit Niederreiter Alexandra Junza Annika Frauenstein Carina Scholtysek Yohei Mikami Kristaps Klavins Gerhard Krönke Andreas Bergthaler John J. O’Shea Thomas Weichhart Felix Meissner Josef S. Smolen Paul Cheng Oscar Yanes Jörg Menche Peter J. Murray Omar Sharif Stephan Blüml Gernot Schabbauer |
author_facet |
Julia S. Brunner Loan Vulliard Melanie Hofmann Markus Kieler Alexander Lercher Andrea Vogel Marion Russier Johanna B. Brüggenthies Martina Kerndl Victoria Saferding Birgit Niederreiter Alexandra Junza Annika Frauenstein Carina Scholtysek Yohei Mikami Kristaps Klavins Gerhard Krönke Andreas Bergthaler John J. O’Shea Thomas Weichhart Felix Meissner Josef S. Smolen Paul Cheng Oscar Yanes Jörg Menche Peter J. Murray Omar Sharif Stephan Blüml Gernot Schabbauer |
author_sort |
Julia S. Brunner |
title |
Environmental arginine controls multinuclear giant cell metabolism and formation |
title_short |
Environmental arginine controls multinuclear giant cell metabolism and formation |
title_full |
Environmental arginine controls multinuclear giant cell metabolism and formation |
title_fullStr |
Environmental arginine controls multinuclear giant cell metabolism and formation |
title_full_unstemmed |
Environmental arginine controls multinuclear giant cell metabolism and formation |
title_sort |
environmental arginine controls multinuclear giant cell metabolism and formation |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/28055bd4c7454a9b869483a12530bfc2 |
work_keys_str_mv |
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