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Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis

While the importance of the iron-load of lipocalin-2 (Lcn-2) in promoting tumor progression is widely appreciated, underlying molecular mechanisms largely remain elusive. Considering its role as an iron-transporter, we aimed at clarifying iron-loaded, holo-Lcn-2 (hLcn-2)-dependent signaling pathways...

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Autores principales: Meier, Julia K., Schnetz, Matthias, Beck, Susanne, Schmid, Tobias, Dominguez, Monica, Kalinovic, Sanela, Daiber, Andreas, Brüne, Bernhard, Jung, Michaela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161288/
https://www.ncbi.nlm.nih.gov/pubmed/34069743
http://dx.doi.org/10.3390/metabo11050329
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author Meier, Julia K.
Schnetz, Matthias
Beck, Susanne
Schmid, Tobias
Dominguez, Monica
Kalinovic, Sanela
Daiber, Andreas
Brüne, Bernhard
Jung, Michaela
author_facet Meier, Julia K.
Schnetz, Matthias
Beck, Susanne
Schmid, Tobias
Dominguez, Monica
Kalinovic, Sanela
Daiber, Andreas
Brüne, Bernhard
Jung, Michaela
author_sort Meier, Julia K.
collection PubMed
description While the importance of the iron-load of lipocalin-2 (Lcn-2) in promoting tumor progression is widely appreciated, underlying molecular mechanisms largely remain elusive. Considering its role as an iron-transporter, we aimed at clarifying iron-loaded, holo-Lcn-2 (hLcn-2)-dependent signaling pathways in affecting renal cancer cell viability. Applying RNA sequencing analysis in renal CAKI1 tumor cells to explore highly upregulated molecular signatures in response to hLcn-2, we identified a cluster of genes (SLC7A11, GCLM, GLS), which are implicated in regulating ferroptosis. Indeed, hLcn-2-stimulated cells are protected from erastin-induced ferroptosis. We also noticed a rapid increase in reactive oxygen species (ROS) with subsequent activation of the antioxidant Nrf2 pathway. However, knocking down Nrf2 by siRNA was not sufficient to induce erastin-dependent ferroptotic cell death in hLcn-2-stimulated tumor cells. In contrast, preventing oxidative stress through N-acetyl-l-cysteine (NAC) supplementation was still able to induce erastin-dependent ferroptotic cell death in hLcn-2-stimulated tumor cells. Besides an oxidative stress response, we noticed activation of the integrated stress response (ISR), shown by enhanced phosphorylation of eIF-2α and induction of ATF4 after hLcn-2 addition. ATF4 knockdown as well as inhibition of the ISR sensitized hLcn-2-treated renal tumor cells to ferroptosis, thus linking the ISR to pro-tumor characteristics of hLcn-2. Our study provides mechanistic details to better understand tumor pro-survival pathways initiated by iron-loaded Lcn-2.
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spelling pubmed-81612882021-05-29 Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis Meier, Julia K. Schnetz, Matthias Beck, Susanne Schmid, Tobias Dominguez, Monica Kalinovic, Sanela Daiber, Andreas Brüne, Bernhard Jung, Michaela Metabolites Article While the importance of the iron-load of lipocalin-2 (Lcn-2) in promoting tumor progression is widely appreciated, underlying molecular mechanisms largely remain elusive. Considering its role as an iron-transporter, we aimed at clarifying iron-loaded, holo-Lcn-2 (hLcn-2)-dependent signaling pathways in affecting renal cancer cell viability. Applying RNA sequencing analysis in renal CAKI1 tumor cells to explore highly upregulated molecular signatures in response to hLcn-2, we identified a cluster of genes (SLC7A11, GCLM, GLS), which are implicated in regulating ferroptosis. Indeed, hLcn-2-stimulated cells are protected from erastin-induced ferroptosis. We also noticed a rapid increase in reactive oxygen species (ROS) with subsequent activation of the antioxidant Nrf2 pathway. However, knocking down Nrf2 by siRNA was not sufficient to induce erastin-dependent ferroptotic cell death in hLcn-2-stimulated tumor cells. In contrast, preventing oxidative stress through N-acetyl-l-cysteine (NAC) supplementation was still able to induce erastin-dependent ferroptotic cell death in hLcn-2-stimulated tumor cells. Besides an oxidative stress response, we noticed activation of the integrated stress response (ISR), shown by enhanced phosphorylation of eIF-2α and induction of ATF4 after hLcn-2 addition. ATF4 knockdown as well as inhibition of the ISR sensitized hLcn-2-treated renal tumor cells to ferroptosis, thus linking the ISR to pro-tumor characteristics of hLcn-2. Our study provides mechanistic details to better understand tumor pro-survival pathways initiated by iron-loaded Lcn-2. MDPI 2021-05-19 /pmc/articles/PMC8161288/ /pubmed/34069743 http://dx.doi.org/10.3390/metabo11050329 Text en © 2021 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
Meier, Julia K.
Schnetz, Matthias
Beck, Susanne
Schmid, Tobias
Dominguez, Monica
Kalinovic, Sanela
Daiber, Andreas
Brüne, Bernhard
Jung, Michaela
Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title_full Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title_fullStr Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title_full_unstemmed Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title_short Iron-Bound Lipocalin-2 Protects Renal Cell Carcinoma from Ferroptosis
title_sort iron-bound lipocalin-2 protects renal cell carcinoma from ferroptosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161288/
https://www.ncbi.nlm.nih.gov/pubmed/34069743
http://dx.doi.org/10.3390/metabo11050329
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