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Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis

BACKGROUND: Long-term hematopoietic stem cells (LT-HSCs) reside in bone marrow niches with tightly controlled reactive oxygen species (ROS) levels. ROS increase results into LT-HSC differentiation and stem cell exhaustion. Paraoxonase 2 (PON2) has been shown to be important for ROS control. OBJECTIV...

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Autores principales: Spiecker, Lisa, Witte, Ines, Mehlig, Julia, Shah, Viral, Meyerhöfer, Markus, Haehnel, Patricia S., Petermann, Victoria, Schüler, Andrea, More, Piyush, Cabezas-Wallscheid, Nina, Horke, Sven, Pautz, Andrea, Daiber, Andreas, Sasca, Daniel, Kindler, Thomas, Kleinert, Hartmut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8253644/
https://www.ncbi.nlm.nih.gov/pubmed/34257800
http://dx.doi.org/10.1155/2021/3917028
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author Spiecker, Lisa
Witte, Ines
Mehlig, Julia
Shah, Viral
Meyerhöfer, Markus
Haehnel, Patricia S.
Petermann, Victoria
Schüler, Andrea
More, Piyush
Cabezas-Wallscheid, Nina
Horke, Sven
Pautz, Andrea
Daiber, Andreas
Sasca, Daniel
Kindler, Thomas
Kleinert, Hartmut
author_facet Spiecker, Lisa
Witte, Ines
Mehlig, Julia
Shah, Viral
Meyerhöfer, Markus
Haehnel, Patricia S.
Petermann, Victoria
Schüler, Andrea
More, Piyush
Cabezas-Wallscheid, Nina
Horke, Sven
Pautz, Andrea
Daiber, Andreas
Sasca, Daniel
Kindler, Thomas
Kleinert, Hartmut
author_sort Spiecker, Lisa
collection PubMed
description BACKGROUND: Long-term hematopoietic stem cells (LT-HSCs) reside in bone marrow niches with tightly controlled reactive oxygen species (ROS) levels. ROS increase results into LT-HSC differentiation and stem cell exhaustion. Paraoxonase 2 (PON2) has been shown to be important for ROS control. OBJECTIVES: We investigate the effects of inactivation of the PON2 gene on hematopoietic cell differentiation and activity. METHODS AND RESULTS: In young mice with inactivated Pon2 gene (Pon2(−/−), <3 months), we observed an increase of LT-HSCs and a reduced frequency of progenitor cells. In competitive transplantations, young Pon2(−/−) BM outcompeted WT BM at early time points. ROS levels were significantly increased in Pon2(−/−) whole BM, but not in Pon2(−/−) LT-HSCs. In more differentiated stages of hematopoiesis, Pon2 deficiency led to a misbalanced erythropoiesis both in physiologic and stress conditions. In older mice (>9 months), Pon2 depletion caused an increase in LT-HSCs as well as increased levels of granulocyte/macrophage progenitors (GMPs) and myeloid skewing, indicating a premature aging phenotype. No significant changes in ROS levels in old Pon2(−/−) LT- and short-term (ST-) HSCs were observed, but a significant reduction of spontaneous apoptotic cell death was measured. RNA-seq analysis in Pon2(−/−) LT-HSCs identified overrepresentation of genes involved in the C-X-C chemokine receptor type 4 (Cxcr4) signaling, suggesting compensatory mechanisms to overcome ROS-mediated accelerated aging in hematopoietic progenitor cells. CONCLUSIONS: In summary, our current data indicate that PON2 is involved in the regulation of HSC functions.
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spelling pubmed-82536442021-07-12 Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis Spiecker, Lisa Witte, Ines Mehlig, Julia Shah, Viral Meyerhöfer, Markus Haehnel, Patricia S. Petermann, Victoria Schüler, Andrea More, Piyush Cabezas-Wallscheid, Nina Horke, Sven Pautz, Andrea Daiber, Andreas Sasca, Daniel Kindler, Thomas Kleinert, Hartmut Oxid Med Cell Longev Research Article BACKGROUND: Long-term hematopoietic stem cells (LT-HSCs) reside in bone marrow niches with tightly controlled reactive oxygen species (ROS) levels. ROS increase results into LT-HSC differentiation and stem cell exhaustion. Paraoxonase 2 (PON2) has been shown to be important for ROS control. OBJECTIVES: We investigate the effects of inactivation of the PON2 gene on hematopoietic cell differentiation and activity. METHODS AND RESULTS: In young mice with inactivated Pon2 gene (Pon2(−/−), <3 months), we observed an increase of LT-HSCs and a reduced frequency of progenitor cells. In competitive transplantations, young Pon2(−/−) BM outcompeted WT BM at early time points. ROS levels were significantly increased in Pon2(−/−) whole BM, but not in Pon2(−/−) LT-HSCs. In more differentiated stages of hematopoiesis, Pon2 deficiency led to a misbalanced erythropoiesis both in physiologic and stress conditions. In older mice (>9 months), Pon2 depletion caused an increase in LT-HSCs as well as increased levels of granulocyte/macrophage progenitors (GMPs) and myeloid skewing, indicating a premature aging phenotype. No significant changes in ROS levels in old Pon2(−/−) LT- and short-term (ST-) HSCs were observed, but a significant reduction of spontaneous apoptotic cell death was measured. RNA-seq analysis in Pon2(−/−) LT-HSCs identified overrepresentation of genes involved in the C-X-C chemokine receptor type 4 (Cxcr4) signaling, suggesting compensatory mechanisms to overcome ROS-mediated accelerated aging in hematopoietic progenitor cells. CONCLUSIONS: In summary, our current data indicate that PON2 is involved in the regulation of HSC functions. Hindawi 2021-06-25 /pmc/articles/PMC8253644/ /pubmed/34257800 http://dx.doi.org/10.1155/2021/3917028 Text en Copyright © 2021 Lisa Spiecker et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The publication of this article was funded by Max Planck.
spellingShingle Research Article
Spiecker, Lisa
Witte, Ines
Mehlig, Julia
Shah, Viral
Meyerhöfer, Markus
Haehnel, Patricia S.
Petermann, Victoria
Schüler, Andrea
More, Piyush
Cabezas-Wallscheid, Nina
Horke, Sven
Pautz, Andrea
Daiber, Andreas
Sasca, Daniel
Kindler, Thomas
Kleinert, Hartmut
Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title_full Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title_fullStr Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title_full_unstemmed Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title_short Deficiency of Antioxidative Paraoxonase 2 (Pon2) Leads to Increased Number of Phenotypic LT-HSCs and Disturbed Erythropoiesis
title_sort deficiency of antioxidative paraoxonase 2 (pon2) leads to increased number of phenotypic lt-hscs and disturbed erythropoiesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8253644/
https://www.ncbi.nlm.nih.gov/pubmed/34257800
http://dx.doi.org/10.1155/2021/3917028
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