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Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia

Zeb1, a zinc finger E-box binding homeobox epithelial-mesenchymal transition (EMT) transcription factor, confers properties of “stemness,” such as self-renewal, in cancer. Yet little is known about the function of Zeb1 in adult stem cells. Here, we used the hematopoietic system as a well-established...

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Autores principales: Almotiri, Alhomidi, Alzahrani, Hamed, Menendez-Gonzalez, Juan Bautista, Abdelfattah, Ali, Alotaibi, Badi, Saleh, Lubaid, Greene, Adelle, Georgiou, Mia, Gibbs, Alex, Alsayari, Amani, Taha, Sarab, Thomas, Leigh-anne, Shah, Dhruv, Edkins, Sarah, Giles, Peter, Stemmler, Marc P., Brabletz, Simone, Brabletz, Thomas, Boyd, Ashleigh S., Siebzehnrubl, Florian A., Rodrigues, Neil P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7773410/
https://www.ncbi.nlm.nih.gov/pubmed/33108352
http://dx.doi.org/10.1172/JCI129115
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author Almotiri, Alhomidi
Alzahrani, Hamed
Menendez-Gonzalez, Juan Bautista
Abdelfattah, Ali
Alotaibi, Badi
Saleh, Lubaid
Greene, Adelle
Georgiou, Mia
Gibbs, Alex
Alsayari, Amani
Taha, Sarab
Thomas, Leigh-anne
Shah, Dhruv
Edkins, Sarah
Giles, Peter
Stemmler, Marc P.
Brabletz, Simone
Brabletz, Thomas
Boyd, Ashleigh S.
Siebzehnrubl, Florian A.
Rodrigues, Neil P.
author_facet Almotiri, Alhomidi
Alzahrani, Hamed
Menendez-Gonzalez, Juan Bautista
Abdelfattah, Ali
Alotaibi, Badi
Saleh, Lubaid
Greene, Adelle
Georgiou, Mia
Gibbs, Alex
Alsayari, Amani
Taha, Sarab
Thomas, Leigh-anne
Shah, Dhruv
Edkins, Sarah
Giles, Peter
Stemmler, Marc P.
Brabletz, Simone
Brabletz, Thomas
Boyd, Ashleigh S.
Siebzehnrubl, Florian A.
Rodrigues, Neil P.
author_sort Almotiri, Alhomidi
collection PubMed
description Zeb1, a zinc finger E-box binding homeobox epithelial-mesenchymal transition (EMT) transcription factor, confers properties of “stemness,” such as self-renewal, in cancer. Yet little is known about the function of Zeb1 in adult stem cells. Here, we used the hematopoietic system as a well-established paradigm of stem cell biology to evaluate Zeb1-mediated regulation of adult stem cells. We employed a conditional genetic approach using the Mx1-Cre system to specifically knock out (KO) Zeb1 in adult hematopoietic stem cells (HSCs) and their downstream progeny. Acute genetic deletion of Zeb1 led to rapid-onset thymic atrophy and apoptosis-driven loss of thymocytes and T cells. A profound cell-autonomous self-renewal defect and multilineage differentiation block were observed in Zeb1-KO HSCs. Loss of Zeb1 in HSCs activated transcriptional programs of deregulated HSC maintenance and multilineage differentiation genes and of cell polarity consisting of cytoskeleton-, lipid metabolism/lipid membrane–, and cell adhesion–related genes. Notably, epithelial cell adhesion molecule (EpCAM) expression was prodigiously upregulated in Zeb1-KO HSCs, which correlated with enhanced cell survival, diminished mitochondrial metabolism, ribosome biogenesis, and differentiation capacity and an activated transcriptomic signature associated with acute myeloid leukemia (AML) signaling. ZEB1 expression was downregulated in AML patients, and Zeb1 KO in the malignant counterparts of HSCs — leukemic stem cells (LSCs) — accelerated MLL-AF9– and Meis1a/Hoxa9-driven AML progression, implicating Zeb1 as a tumor suppressor in AML LSCs. Thus, Zeb1 acts as a transcriptional regulator in hematopoiesis, critically coordinating HSC self-renewal, apoptotic, and multilineage differentiation fates required to suppress leukemic potential in AML.
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spelling pubmed-77734102021-01-05 Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia Almotiri, Alhomidi Alzahrani, Hamed Menendez-Gonzalez, Juan Bautista Abdelfattah, Ali Alotaibi, Badi Saleh, Lubaid Greene, Adelle Georgiou, Mia Gibbs, Alex Alsayari, Amani Taha, Sarab Thomas, Leigh-anne Shah, Dhruv Edkins, Sarah Giles, Peter Stemmler, Marc P. Brabletz, Simone Brabletz, Thomas Boyd, Ashleigh S. Siebzehnrubl, Florian A. Rodrigues, Neil P. J Clin Invest Research Article Zeb1, a zinc finger E-box binding homeobox epithelial-mesenchymal transition (EMT) transcription factor, confers properties of “stemness,” such as self-renewal, in cancer. Yet little is known about the function of Zeb1 in adult stem cells. Here, we used the hematopoietic system as a well-established paradigm of stem cell biology to evaluate Zeb1-mediated regulation of adult stem cells. We employed a conditional genetic approach using the Mx1-Cre system to specifically knock out (KO) Zeb1 in adult hematopoietic stem cells (HSCs) and their downstream progeny. Acute genetic deletion of Zeb1 led to rapid-onset thymic atrophy and apoptosis-driven loss of thymocytes and T cells. A profound cell-autonomous self-renewal defect and multilineage differentiation block were observed in Zeb1-KO HSCs. Loss of Zeb1 in HSCs activated transcriptional programs of deregulated HSC maintenance and multilineage differentiation genes and of cell polarity consisting of cytoskeleton-, lipid metabolism/lipid membrane–, and cell adhesion–related genes. Notably, epithelial cell adhesion molecule (EpCAM) expression was prodigiously upregulated in Zeb1-KO HSCs, which correlated with enhanced cell survival, diminished mitochondrial metabolism, ribosome biogenesis, and differentiation capacity and an activated transcriptomic signature associated with acute myeloid leukemia (AML) signaling. ZEB1 expression was downregulated in AML patients, and Zeb1 KO in the malignant counterparts of HSCs — leukemic stem cells (LSCs) — accelerated MLL-AF9– and Meis1a/Hoxa9-driven AML progression, implicating Zeb1 as a tumor suppressor in AML LSCs. Thus, Zeb1 acts as a transcriptional regulator in hematopoiesis, critically coordinating HSC self-renewal, apoptotic, and multilineage differentiation fates required to suppress leukemic potential in AML. American Society for Clinical Investigation 2021-01-04 2021-01-04 /pmc/articles/PMC7773410/ /pubmed/33108352 http://dx.doi.org/10.1172/JCI129115 Text en © 2021 Almotiri et al. http://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/.
spellingShingle Research Article
Almotiri, Alhomidi
Alzahrani, Hamed
Menendez-Gonzalez, Juan Bautista
Abdelfattah, Ali
Alotaibi, Badi
Saleh, Lubaid
Greene, Adelle
Georgiou, Mia
Gibbs, Alex
Alsayari, Amani
Taha, Sarab
Thomas, Leigh-anne
Shah, Dhruv
Edkins, Sarah
Giles, Peter
Stemmler, Marc P.
Brabletz, Simone
Brabletz, Thomas
Boyd, Ashleigh S.
Siebzehnrubl, Florian A.
Rodrigues, Neil P.
Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title_full Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title_fullStr Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title_full_unstemmed Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title_short Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
title_sort zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7773410/
https://www.ncbi.nlm.nih.gov/pubmed/33108352
http://dx.doi.org/10.1172/JCI129115
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