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Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia

Fanconi anemia (FA) is the most prevalent inherited bone marrow failure (BMF) syndrome. Nevertheless, the pathophysiological mechanisms of BMF in FA have not been fully elucidated. Since FA cells are defective in DNA repair, we hypothesized that FA hematopoietic stem and progenitor cells (HSPCs) mig...

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Autores principales: Casado, José A., Valeri, Antonio, Sanchez-Domínguez, Rebeca, Vela, Paula, López, Andrea, Navarro, Susana, Alberquilla, Omaira, Hanenberg, Helmut, Pujol, Roser, Segovia, José-Carlos, Minguillón, Jordi, Surrallés, Jordi, de Heredia, Cristina Díaz, Sevilla, Julián, Rio, Paula, Bueren, Juan A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337828/
https://www.ncbi.nlm.nih.gov/pubmed/35671096
http://dx.doi.org/10.1172/JCI142842
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author Casado, José A.
Valeri, Antonio
Sanchez-Domínguez, Rebeca
Vela, Paula
López, Andrea
Navarro, Susana
Alberquilla, Omaira
Hanenberg, Helmut
Pujol, Roser
Segovia, José-Carlos
Minguillón, Jordi
Surrallés, Jordi
de Heredia, Cristina Díaz
Sevilla, Julián
Rio, Paula
Bueren, Juan A.
author_facet Casado, José A.
Valeri, Antonio
Sanchez-Domínguez, Rebeca
Vela, Paula
López, Andrea
Navarro, Susana
Alberquilla, Omaira
Hanenberg, Helmut
Pujol, Roser
Segovia, José-Carlos
Minguillón, Jordi
Surrallés, Jordi
de Heredia, Cristina Díaz
Sevilla, Julián
Rio, Paula
Bueren, Juan A.
author_sort Casado, José A.
collection PubMed
description Fanconi anemia (FA) is the most prevalent inherited bone marrow failure (BMF) syndrome. Nevertheless, the pathophysiological mechanisms of BMF in FA have not been fully elucidated. Since FA cells are defective in DNA repair, we hypothesized that FA hematopoietic stem and progenitor cells (HSPCs) might express DNA damage–associated stress molecules such as natural killer group 2 member D ligands (NKG2D-Ls). These ligands could then interact with the activating NKG2D receptor expressed in cytotoxic NK or CD8(+) T cells, which may result in progressive HSPC depletion. Our results indeed demonstrated upregulated levels of NKG2D-Ls in cultured FA fibroblasts and T cells, and these levels were further exacerbated by mitomycin C or formaldehyde. Notably, a high proportion of BM CD34(+) HSPCs from patients with FA also expressed increased levels of NKG2D-Ls, which correlated inversely with the percentage of CD34(+) cells in BM. Remarkably, the reduced clonogenic potential characteristic of FA HSPCs was improved by blocking NKG2D–NKG2D-L interactions. Moreover, the in vivo blockage of these interactions in a BMF FA mouse model ameliorated the anemia in these animals. Our study demonstrates the involvement of NKG2D–NKG2D-L interactions in FA HSPC functionality, suggesting an unexpected role of the immune system in the progressive BMF that is characteristic of FA.
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spelling pubmed-93378282022-08-03 Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia Casado, José A. Valeri, Antonio Sanchez-Domínguez, Rebeca Vela, Paula López, Andrea Navarro, Susana Alberquilla, Omaira Hanenberg, Helmut Pujol, Roser Segovia, José-Carlos Minguillón, Jordi Surrallés, Jordi de Heredia, Cristina Díaz Sevilla, Julián Rio, Paula Bueren, Juan A. J Clin Invest Research Article Fanconi anemia (FA) is the most prevalent inherited bone marrow failure (BMF) syndrome. Nevertheless, the pathophysiological mechanisms of BMF in FA have not been fully elucidated. Since FA cells are defective in DNA repair, we hypothesized that FA hematopoietic stem and progenitor cells (HSPCs) might express DNA damage–associated stress molecules such as natural killer group 2 member D ligands (NKG2D-Ls). These ligands could then interact with the activating NKG2D receptor expressed in cytotoxic NK or CD8(+) T cells, which may result in progressive HSPC depletion. Our results indeed demonstrated upregulated levels of NKG2D-Ls in cultured FA fibroblasts and T cells, and these levels were further exacerbated by mitomycin C or formaldehyde. Notably, a high proportion of BM CD34(+) HSPCs from patients with FA also expressed increased levels of NKG2D-Ls, which correlated inversely with the percentage of CD34(+) cells in BM. Remarkably, the reduced clonogenic potential characteristic of FA HSPCs was improved by blocking NKG2D–NKG2D-L interactions. Moreover, the in vivo blockage of these interactions in a BMF FA mouse model ameliorated the anemia in these animals. Our study demonstrates the involvement of NKG2D–NKG2D-L interactions in FA HSPC functionality, suggesting an unexpected role of the immune system in the progressive BMF that is characteristic of FA. American Society for Clinical Investigation 2022-08-01 2022-08-01 /pmc/articles/PMC9337828/ /pubmed/35671096 http://dx.doi.org/10.1172/JCI142842 Text en © 2022 Casado et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Casado, José A.
Valeri, Antonio
Sanchez-Domínguez, Rebeca
Vela, Paula
López, Andrea
Navarro, Susana
Alberquilla, Omaira
Hanenberg, Helmut
Pujol, Roser
Segovia, José-Carlos
Minguillón, Jordi
Surrallés, Jordi
de Heredia, Cristina Díaz
Sevilla, Julián
Rio, Paula
Bueren, Juan A.
Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title_full Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title_fullStr Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title_full_unstemmed Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title_short Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia
title_sort upregulation of nkg2d ligands impairs hematopoietic stem cell function in fanconi anemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337828/
https://www.ncbi.nlm.nih.gov/pubmed/35671096
http://dx.doi.org/10.1172/JCI142842
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