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Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD

RUNX1 familial platelet disorder (RUNX1-FPD) is a hematopoietic disorder caused by germline loss-of-function mutations in the RUNX1 gene and characterized by thrombocytopathy, thrombocytopenia, and an increased risk of developing hematologic malignancies, mostly of myeloid origin. Disease pathophysi...

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Autores principales: Ernst, Martijn P. T., Pronk, Eline, van Dijk, Claire, van Strien, Paulina M. H., van Tienhoven, Tim V. D., Wevers, Michiel J. W., Sanders, Mathijs A., Bindels, Eric M. J., Speck, Nancy A., Raaijmakers, Marc H. G. P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891454/
https://www.ncbi.nlm.nih.gov/pubmed/36741355
http://dx.doi.org/10.1097/HS9.0000000000000824
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author Ernst, Martijn P. T.
Pronk, Eline
van Dijk, Claire
van Strien, Paulina M. H.
van Tienhoven, Tim V. D.
Wevers, Michiel J. W.
Sanders, Mathijs A.
Bindels, Eric M. J.
Speck, Nancy A.
Raaijmakers, Marc H. G. P.
author_facet Ernst, Martijn P. T.
Pronk, Eline
van Dijk, Claire
van Strien, Paulina M. H.
van Tienhoven, Tim V. D.
Wevers, Michiel J. W.
Sanders, Mathijs A.
Bindels, Eric M. J.
Speck, Nancy A.
Raaijmakers, Marc H. G. P.
author_sort Ernst, Martijn P. T.
collection PubMed
description RUNX1 familial platelet disorder (RUNX1-FPD) is a hematopoietic disorder caused by germline loss-of-function mutations in the RUNX1 gene and characterized by thrombocytopathy, thrombocytopenia, and an increased risk of developing hematologic malignancies, mostly of myeloid origin. Disease pathophysiology has remained incompletely understood, in part because of a shortage of in vivo models recapitulating the germline RUNX1 loss of function found in humans, precluding the study of potential contributions of non-hematopoietic cells to disease pathogenesis. Here, we studied mice harboring a germline hypomorphic mutation of one Runx1 allele with a loss-of-function mutation in the other Runx1 allele (Runx1(L148A/−) mice), which display many hematologic characteristics found in human RUNX1-FPD patients. Runx1(L148A/−) mice displayed robust and pronounced thrombocytopenia and myeloid-biased hematopoiesis, associated with an HSC intrinsic reconstitution defect in lymphopoiesis and expansion of myeloid progenitor cell pools. We demonstrate that specific deletion of Runx1 from bone marrow stromal cells in Prrx1-cre;Runx1(fl/fl) mice did not recapitulate these abnormalities, indicating that the hematopoietic abnormalities are intrinsic to the hematopoietic lineage, and arguing against a driving role of the bone marrow microenvironment. In conclusion, we report a RUNX1-FPD mouse model faithfully recapitulating key characteristics of human disease. Findings do not support a driving role of ancillary, non-hematopoietic cells in the disruption of hematopoiesis under homeostatic conditions.
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spelling pubmed-98914542023-02-02 Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD Ernst, Martijn P. T. Pronk, Eline van Dijk, Claire van Strien, Paulina M. H. van Tienhoven, Tim V. D. Wevers, Michiel J. W. Sanders, Mathijs A. Bindels, Eric M. J. Speck, Nancy A. Raaijmakers, Marc H. G. P. Hemasphere Article RUNX1 familial platelet disorder (RUNX1-FPD) is a hematopoietic disorder caused by germline loss-of-function mutations in the RUNX1 gene and characterized by thrombocytopathy, thrombocytopenia, and an increased risk of developing hematologic malignancies, mostly of myeloid origin. Disease pathophysiology has remained incompletely understood, in part because of a shortage of in vivo models recapitulating the germline RUNX1 loss of function found in humans, precluding the study of potential contributions of non-hematopoietic cells to disease pathogenesis. Here, we studied mice harboring a germline hypomorphic mutation of one Runx1 allele with a loss-of-function mutation in the other Runx1 allele (Runx1(L148A/−) mice), which display many hematologic characteristics found in human RUNX1-FPD patients. Runx1(L148A/−) mice displayed robust and pronounced thrombocytopenia and myeloid-biased hematopoiesis, associated with an HSC intrinsic reconstitution defect in lymphopoiesis and expansion of myeloid progenitor cell pools. We demonstrate that specific deletion of Runx1 from bone marrow stromal cells in Prrx1-cre;Runx1(fl/fl) mice did not recapitulate these abnormalities, indicating that the hematopoietic abnormalities are intrinsic to the hematopoietic lineage, and arguing against a driving role of the bone marrow microenvironment. In conclusion, we report a RUNX1-FPD mouse model faithfully recapitulating key characteristics of human disease. Findings do not support a driving role of ancillary, non-hematopoietic cells in the disruption of hematopoiesis under homeostatic conditions. Lippincott Williams & Wilkins 2023-01-31 /pmc/articles/PMC9891454/ /pubmed/36741355 http://dx.doi.org/10.1097/HS9.0000000000000824 Text en Copyright © 2023 the Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the European Hematology Association. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) , where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Article
Ernst, Martijn P. T.
Pronk, Eline
van Dijk, Claire
van Strien, Paulina M. H.
van Tienhoven, Tim V. D.
Wevers, Michiel J. W.
Sanders, Mathijs A.
Bindels, Eric M. J.
Speck, Nancy A.
Raaijmakers, Marc H. G. P.
Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title_full Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title_fullStr Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title_full_unstemmed Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title_short Hematopoietic Cell Autonomous Disruption of Hematopoiesis in a Germline Loss-of-function Mouse Model of RUNX1-FPD
title_sort hematopoietic cell autonomous disruption of hematopoiesis in a germline loss-of-function mouse model of runx1-fpd
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9891454/
https://www.ncbi.nlm.nih.gov/pubmed/36741355
http://dx.doi.org/10.1097/HS9.0000000000000824
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