Cargando…

Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells

Erythropoietin (Epo) is a crucial hormone regulating red blood cell number and consequently the hematocrit. Epo is mainly produced in the kidney by interstitial fibroblast-like cells. Previously, we have shown that in cultures of the immortalized mouse renal fibroblast-like cell line FAIK F3-5, sphi...

Descripción completa

Detalles Bibliográficos
Autores principales: Hafizi, Redona, Imeri, Faik, Stepanovska Tanturovska, Bisera, Manaila, Roxana, Schwalm, Stephanie, Trautmann, Sandra, Wenger, Roland H., Pfeilschifter, Josef, Huwiler, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180811/
https://www.ncbi.nlm.nih.gov/pubmed/35682566
http://dx.doi.org/10.3390/ijms23115882
_version_ 1784723612207415296
author Hafizi, Redona
Imeri, Faik
Stepanovska Tanturovska, Bisera
Manaila, Roxana
Schwalm, Stephanie
Trautmann, Sandra
Wenger, Roland H.
Pfeilschifter, Josef
Huwiler, Andrea
author_facet Hafizi, Redona
Imeri, Faik
Stepanovska Tanturovska, Bisera
Manaila, Roxana
Schwalm, Stephanie
Trautmann, Sandra
Wenger, Roland H.
Pfeilschifter, Josef
Huwiler, Andrea
author_sort Hafizi, Redona
collection PubMed
description Erythropoietin (Epo) is a crucial hormone regulating red blood cell number and consequently the hematocrit. Epo is mainly produced in the kidney by interstitial fibroblast-like cells. Previously, we have shown that in cultures of the immortalized mouse renal fibroblast-like cell line FAIK F3-5, sphingosine 1-phosphate (S1P), by activating S1P(1) and S1P(3) receptors, can stabilize hypoxia-inducible factor (HIF)-2α and upregulate Epo mRNA and protein synthesis. In this study, we have addressed the role of intracellular iS1P derived from sphingosine kinases (Sphk) 1 and 2 on Epo synthesis in F3-5 cells and in mouse primary cultures of renal fibroblasts. We show that stable knockdown of Sphk2 in F3-5 cells increases HIF-2α protein and Epo mRNA and protein levels, while Sphk1 knockdown leads to a reduction of hypoxia-stimulated HIF-2α and Epo protein. A similar effect was obtained using primary cultures of renal fibroblasts isolated from wildtype mice, Sphk1−/−, or Sphk2−/− mice. Furthermore, selective Sphk2 inhibitors mimicked the effect of genetic Sphk2 depletion and also upregulated HIF-2α and Epo protein levels. The combined blockade of Sphk1 and Sphk2, using Sphk2−/− renal fibroblasts treated with the Sphk1 inhibitor PF543, resulted in reduced HIF-2α and Epo compared to the untreated Sphk2−/− cells. Exogenous sphingosine (Sph) enhanced HIF-2α and Epo, and this was abolished by the combined treatment with the selective S1P(1) and S1P(3) antagonists NIBR-0213 and TY52156, suggesting that Sph was taken up by cells and converted to iS1P and exported to then act in an autocrine manner through S1P(1) and S1P(3). The upregulation of HIF-2α and Epo synthesis by Sphk2 knockdown was confirmed in the human hepatoma cell line Hep3B, which is well-established to upregulate Epo production under hypoxia. In summary, these data show that sphingolipids have diverse effects on Epo synthesis. While accumulation of intracellular Sph reduces Epo synthesis, iS1P will be exported to act through S1P(1+3) to enhance Epo synthesis. Furthermore, these data suggest that selective inhibition of Sphk2 is an attractive new option to enhance Epo synthesis and thereby to reduce anemia development in chronic kidney disease.
format Online
Article
Text
id pubmed-9180811
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91808112022-06-10 Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells Hafizi, Redona Imeri, Faik Stepanovska Tanturovska, Bisera Manaila, Roxana Schwalm, Stephanie Trautmann, Sandra Wenger, Roland H. Pfeilschifter, Josef Huwiler, Andrea Int J Mol Sci Article Erythropoietin (Epo) is a crucial hormone regulating red blood cell number and consequently the hematocrit. Epo is mainly produced in the kidney by interstitial fibroblast-like cells. Previously, we have shown that in cultures of the immortalized mouse renal fibroblast-like cell line FAIK F3-5, sphingosine 1-phosphate (S1P), by activating S1P(1) and S1P(3) receptors, can stabilize hypoxia-inducible factor (HIF)-2α and upregulate Epo mRNA and protein synthesis. In this study, we have addressed the role of intracellular iS1P derived from sphingosine kinases (Sphk) 1 and 2 on Epo synthesis in F3-5 cells and in mouse primary cultures of renal fibroblasts. We show that stable knockdown of Sphk2 in F3-5 cells increases HIF-2α protein and Epo mRNA and protein levels, while Sphk1 knockdown leads to a reduction of hypoxia-stimulated HIF-2α and Epo protein. A similar effect was obtained using primary cultures of renal fibroblasts isolated from wildtype mice, Sphk1−/−, or Sphk2−/− mice. Furthermore, selective Sphk2 inhibitors mimicked the effect of genetic Sphk2 depletion and also upregulated HIF-2α and Epo protein levels. The combined blockade of Sphk1 and Sphk2, using Sphk2−/− renal fibroblasts treated with the Sphk1 inhibitor PF543, resulted in reduced HIF-2α and Epo compared to the untreated Sphk2−/− cells. Exogenous sphingosine (Sph) enhanced HIF-2α and Epo, and this was abolished by the combined treatment with the selective S1P(1) and S1P(3) antagonists NIBR-0213 and TY52156, suggesting that Sph was taken up by cells and converted to iS1P and exported to then act in an autocrine manner through S1P(1) and S1P(3). The upregulation of HIF-2α and Epo synthesis by Sphk2 knockdown was confirmed in the human hepatoma cell line Hep3B, which is well-established to upregulate Epo production under hypoxia. In summary, these data show that sphingolipids have diverse effects on Epo synthesis. While accumulation of intracellular Sph reduces Epo synthesis, iS1P will be exported to act through S1P(1+3) to enhance Epo synthesis. Furthermore, these data suggest that selective inhibition of Sphk2 is an attractive new option to enhance Epo synthesis and thereby to reduce anemia development in chronic kidney disease. MDPI 2022-05-24 /pmc/articles/PMC9180811/ /pubmed/35682566 http://dx.doi.org/10.3390/ijms23115882 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
Hafizi, Redona
Imeri, Faik
Stepanovska Tanturovska, Bisera
Manaila, Roxana
Schwalm, Stephanie
Trautmann, Sandra
Wenger, Roland H.
Pfeilschifter, Josef
Huwiler, Andrea
Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title_full Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title_fullStr Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title_full_unstemmed Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title_short Sphk1 and Sphk2 Differentially Regulate Erythropoietin Synthesis in Mouse Renal Interstitial Fibroblast-like Cells
title_sort sphk1 and sphk2 differentially regulate erythropoietin synthesis in mouse renal interstitial fibroblast-like cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180811/
https://www.ncbi.nlm.nih.gov/pubmed/35682566
http://dx.doi.org/10.3390/ijms23115882
work_keys_str_mv AT hafiziredona sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT imerifaik sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT stepanovskatanturovskabisera sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT manailaroxana sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT schwalmstephanie sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT trautmannsandra sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT wengerrolandh sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT pfeilschifterjosef sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells
AT huwilerandrea sphk1andsphk2differentiallyregulateerythropoietinsynthesisinmouserenalinterstitialfibroblastlikecells