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Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene

Multiple myeloma (MM) is the second most common hematologic malignancy, which is characterized by clonal proliferation of neoplastic plasma cells in the bone marrow. This microenvironment is characterized by low oxygen levels (1–6% O(2)), known as hypoxia. For MM cells, hypoxia is a physiologic feat...

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Autores principales: Clees, Ada-Sophia, Stolp, Verena, Häupl, Björn, Fuhrmann, Dominik C., Wempe, Frank, Seibert, Marcel, Weber, Sarah, Banning, Antje, Tikkanen, Ritva, Williams, Richard, Brüne, Bernhard, Serve, Hubert, Schnütgen, Frank, von Metzler, Ivana, Kurrle, Nina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773999/
https://www.ncbi.nlm.nih.gov/pubmed/35053409
http://dx.doi.org/10.3390/cells11020292
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author Clees, Ada-Sophia
Stolp, Verena
Häupl, Björn
Fuhrmann, Dominik C.
Wempe, Frank
Seibert, Marcel
Weber, Sarah
Banning, Antje
Tikkanen, Ritva
Williams, Richard
Brüne, Bernhard
Serve, Hubert
Schnütgen, Frank
von Metzler, Ivana
Kurrle, Nina
author_facet Clees, Ada-Sophia
Stolp, Verena
Häupl, Björn
Fuhrmann, Dominik C.
Wempe, Frank
Seibert, Marcel
Weber, Sarah
Banning, Antje
Tikkanen, Ritva
Williams, Richard
Brüne, Bernhard
Serve, Hubert
Schnütgen, Frank
von Metzler, Ivana
Kurrle, Nina
author_sort Clees, Ada-Sophia
collection PubMed
description Multiple myeloma (MM) is the second most common hematologic malignancy, which is characterized by clonal proliferation of neoplastic plasma cells in the bone marrow. This microenvironment is characterized by low oxygen levels (1–6% O(2)), known as hypoxia. For MM cells, hypoxia is a physiologic feature that has been described to promote an aggressive phenotype and to confer drug resistance. However, studies on hypoxia are scarce and show little conformity. Here, we analyzed the mRNA expression of previously determined hypoxia markers to define the temporal adaptation of MM cells to chronic hypoxia. Subsequent analyses of the global proteome in MM cells and the stromal cell line HS-5 revealed hypoxia-dependent regulation of proteins, which directly or indirectly upregulate glycolysis. In addition, chronic hypoxia led to MM-specific regulation of nine distinct proteins. One of these proteins is the cysteine protease legumain (LGMN), the depletion of which led to a significant growth disadvantage of MM cell lines that is enhanced under hypoxia. Thus, herein, we report a methodologic strategy to examine MM cells under physiologic hypoxic conditions in vitro and to decipher and study previously masked hypoxia-specific therapeutic targets such as the cysteine protease LGMN.
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spelling pubmed-87739992022-01-21 Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene Clees, Ada-Sophia Stolp, Verena Häupl, Björn Fuhrmann, Dominik C. Wempe, Frank Seibert, Marcel Weber, Sarah Banning, Antje Tikkanen, Ritva Williams, Richard Brüne, Bernhard Serve, Hubert Schnütgen, Frank von Metzler, Ivana Kurrle, Nina Cells Article Multiple myeloma (MM) is the second most common hematologic malignancy, which is characterized by clonal proliferation of neoplastic plasma cells in the bone marrow. This microenvironment is characterized by low oxygen levels (1–6% O(2)), known as hypoxia. For MM cells, hypoxia is a physiologic feature that has been described to promote an aggressive phenotype and to confer drug resistance. However, studies on hypoxia are scarce and show little conformity. Here, we analyzed the mRNA expression of previously determined hypoxia markers to define the temporal adaptation of MM cells to chronic hypoxia. Subsequent analyses of the global proteome in MM cells and the stromal cell line HS-5 revealed hypoxia-dependent regulation of proteins, which directly or indirectly upregulate glycolysis. In addition, chronic hypoxia led to MM-specific regulation of nine distinct proteins. One of these proteins is the cysteine protease legumain (LGMN), the depletion of which led to a significant growth disadvantage of MM cell lines that is enhanced under hypoxia. Thus, herein, we report a methodologic strategy to examine MM cells under physiologic hypoxic conditions in vitro and to decipher and study previously masked hypoxia-specific therapeutic targets such as the cysteine protease LGMN. MDPI 2022-01-15 /pmc/articles/PMC8773999/ /pubmed/35053409 http://dx.doi.org/10.3390/cells11020292 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Clees, Ada-Sophia
Stolp, Verena
Häupl, Björn
Fuhrmann, Dominik C.
Wempe, Frank
Seibert, Marcel
Weber, Sarah
Banning, Antje
Tikkanen, Ritva
Williams, Richard
Brüne, Bernhard
Serve, Hubert
Schnütgen, Frank
von Metzler, Ivana
Kurrle, Nina
Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title_full Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title_fullStr Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title_full_unstemmed Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title_short Identification of the Cysteine Protease Legumain as a Potential Chronic Hypoxia-Specific Multiple Myeloma Target Gene
title_sort identification of the cysteine protease legumain as a potential chronic hypoxia-specific multiple myeloma target gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773999/
https://www.ncbi.nlm.nih.gov/pubmed/35053409
http://dx.doi.org/10.3390/cells11020292
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