Ada-Sophia Clees, Verena Stolp, Björn Häupl, Dominik Christian Fuhrmann, Frank Wempe, Marcel Seibert, Sarah Weber, Antje Banning, Ritva Tikkanen, Richard Williams, Bernhard Brüne, Hubert Serve, Frank Schnütgen, Ivana von Metzler, Nina Susanne Kurrle
- 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% O2), 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.
MetadatenAuthor: | Ada-Sophia CleesGND, Verena Stolp, Björn Häupl, Dominik Christian FuhrmannORCiDGND, Frank WempeGND, Marcel SeibertGND, Sarah WeberORCiD, Antje BanningGND, Ritva TikkanenORCiDGND, Richard Williams, Bernhard BrüneORCiD, Hubert ServeORCiDGND, Frank SchnütgenORCiDGND, Ivana von Metzler, Nina Susanne KurrleORCiDGND |
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URN: | urn:nbn:de:hebis:30:3-818505 |
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DOI: | https://doi.org/10.3390/cells11020292 |
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ISSN: | 2073-4409 |
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Parent Title (English): | Cells |
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Publisher: | MDPI |
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Place of publication: | Basel |
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Document Type: | Article |
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Language: | English |
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Date of Publication (online): | 2022/01/15 |
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Date of first Publication: | 2022/01/15 |
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Publishing Institution: | Universitätsbibliothek Johann Christian Senckenberg |
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Release Date: | 2024/01/29 |
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Tag: | asparaginyl endopepdidase (AEP); chronic hypoxia; glycolysis; legumain; multiple myeloma |
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Volume: | 11 |
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Issue: | 2, art. 292 |
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Article Number: | 292 |
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Page Number: | 1 |
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First Page: | 1 |
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Last Page: | 26 |
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Note: | The project is part of the LOEWE Main Research Focus DynaMem, which is funded by the German Federal State of Hesse within the framework of the Hessian initiative for scientific and economic excellence (LOEWE). |
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Institutes: | Medizin |
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Dewey Decimal Classification: | 6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit |
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Sammlungen: | Universitätspublikationen |
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Licence (German): | Creative Commons - CC BY - Namensnennung 4.0 International |
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