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Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice

SAMD9 and SAMD9L germline mutations have recently emerged as a new class of predispositions to pediatric myeloid neoplasms. Patients commonly have impaired hematopoiesis, hypocellular marrows, and a greater risk of developing clonal chromosome 7 deletions leading to MDS and AML. We recently demonstr...

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Autores principales: Abdelhamed, Sherif, Thomas, Melvin E., Westover, Tamara, Umeda, Masayuki, Xiong, Emily, Rolle, Chandra, Walsh, Michael P., Wu, Huiyun, Schwartz, Jason R., Valentine, Virginia, Valentine, Marcus, Pounds, Stanley, Ma, Jing, Janke, Laura J., Klco, Jeffery M.
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/PMC9621136/
https://www.ncbi.nlm.nih.gov/pubmed/36074606
http://dx.doi.org/10.1172/JCI158869
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author Abdelhamed, Sherif
Thomas, Melvin E.
Westover, Tamara
Umeda, Masayuki
Xiong, Emily
Rolle, Chandra
Walsh, Michael P.
Wu, Huiyun
Schwartz, Jason R.
Valentine, Virginia
Valentine, Marcus
Pounds, Stanley
Ma, Jing
Janke, Laura J.
Klco, Jeffery M.
author_facet Abdelhamed, Sherif
Thomas, Melvin E.
Westover, Tamara
Umeda, Masayuki
Xiong, Emily
Rolle, Chandra
Walsh, Michael P.
Wu, Huiyun
Schwartz, Jason R.
Valentine, Virginia
Valentine, Marcus
Pounds, Stanley
Ma, Jing
Janke, Laura J.
Klco, Jeffery M.
author_sort Abdelhamed, Sherif
collection PubMed
description SAMD9 and SAMD9L germline mutations have recently emerged as a new class of predispositions to pediatric myeloid neoplasms. Patients commonly have impaired hematopoiesis, hypocellular marrows, and a greater risk of developing clonal chromosome 7 deletions leading to MDS and AML. We recently demonstrated that expressing SAMD9 or SAMD9L mutations in hematopoietic cells suppresses their proliferation and induces cell death. Here, we generated a mouse model that conditionally expresses mutant Samd9l to assess the in vivo impact on hematopoiesis. Using a range of in vivo and ex vivo assays, we showed that cells with heterozygous Samd9l mutations have impaired stemness relative to wild-type counterparts, which was exacerbated by inflammatory stimuli, and ultimately led to bone marrow hypocellularity. Genomic and phenotypic analyses recapitulated many of the hematopoietic cellular phenotypes observed in patients with SAMD9 or SAMD9L mutations, including lymphopenia, and pinpointed TGF-β as a potential targetable pathway. Further, we observed nonrandom genetic deletion of the mutant Samd9l locus on mouse chromosome 6, mimicking chromosome 7 deletions observed in patients. Collectively, our study has enhanced our understanding of mutant Samd9l hematopoietic phenotypes, emphasized the synergistic role of inflammation in exaggerating the associated hematopoietic defects, and provided insights into potential therapeutic options for patients.
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spelling pubmed-96211362022-11-03 Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice Abdelhamed, Sherif Thomas, Melvin E. Westover, Tamara Umeda, Masayuki Xiong, Emily Rolle, Chandra Walsh, Michael P. Wu, Huiyun Schwartz, Jason R. Valentine, Virginia Valentine, Marcus Pounds, Stanley Ma, Jing Janke, Laura J. Klco, Jeffery M. J Clin Invest Research Article SAMD9 and SAMD9L germline mutations have recently emerged as a new class of predispositions to pediatric myeloid neoplasms. Patients commonly have impaired hematopoiesis, hypocellular marrows, and a greater risk of developing clonal chromosome 7 deletions leading to MDS and AML. We recently demonstrated that expressing SAMD9 or SAMD9L mutations in hematopoietic cells suppresses their proliferation and induces cell death. Here, we generated a mouse model that conditionally expresses mutant Samd9l to assess the in vivo impact on hematopoiesis. Using a range of in vivo and ex vivo assays, we showed that cells with heterozygous Samd9l mutations have impaired stemness relative to wild-type counterparts, which was exacerbated by inflammatory stimuli, and ultimately led to bone marrow hypocellularity. Genomic and phenotypic analyses recapitulated many of the hematopoietic cellular phenotypes observed in patients with SAMD9 or SAMD9L mutations, including lymphopenia, and pinpointed TGF-β as a potential targetable pathway. Further, we observed nonrandom genetic deletion of the mutant Samd9l locus on mouse chromosome 6, mimicking chromosome 7 deletions observed in patients. Collectively, our study has enhanced our understanding of mutant Samd9l hematopoietic phenotypes, emphasized the synergistic role of inflammation in exaggerating the associated hematopoietic defects, and provided insights into potential therapeutic options for patients. American Society for Clinical Investigation 2022-11-01 /pmc/articles/PMC9621136/ /pubmed/36074606 http://dx.doi.org/10.1172/JCI158869 Text en © 2022 Abdelhamed 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
Abdelhamed, Sherif
Thomas, Melvin E.
Westover, Tamara
Umeda, Masayuki
Xiong, Emily
Rolle, Chandra
Walsh, Michael P.
Wu, Huiyun
Schwartz, Jason R.
Valentine, Virginia
Valentine, Marcus
Pounds, Stanley
Ma, Jing
Janke, Laura J.
Klco, Jeffery M.
Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title_full Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title_fullStr Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title_full_unstemmed Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title_short Mutant Samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
title_sort mutant samd9l expression impairs hematopoiesis and induces bone marrow failure in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9621136/
https://www.ncbi.nlm.nih.gov/pubmed/36074606
http://dx.doi.org/10.1172/JCI158869
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