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The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment

The bone marrow microenvironment (BMM) can regulate leukemia stem cells (LSCs) via secreted factors. Increasing evidence suggests that dissecting the mechanisms by which the BMM maintains LSCs may lead to the development of effective therapies for the eradication of leukemia. Inhibitor of DNA bindin...

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Autores principales: Fei, Ming-Yue, Wang, Yong, Chang, Bin-He, Xue, Kai, Dong, Fangyi, Huang, Dan, Li, Xi-Ya, Li, Zi-Juan, Hu, Cheng-Long, Liu, Ping, Wu, Ji-Chuan, Yu, Peng-Cheng, Hong, Ming-Hua, Chen, Shu-Bei, Xu, Chun-Hui, Chen, Bing-Yi, Jiang, Yi-Lun, Liu, Na, Zhao, Chong, Jin, Jia-Cheng, Hou, Dan, Chen, Xin-Chi, Ren, Yi-Yi, Deng, Chu-Han, Zhang, Jia-Ying, Zong, Li-juan, Wang, Rou-Jia, Gao, Fei-Fei, Liu, Hui, Zhang, Qun-Ling, Wu, Ling-Yun, Yan, Jinsong, Shen, Shuhong, Chang, Chun-Kang, Sun, Xiao-Jian, Wang, Lan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Hematology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10644073/
https://www.ncbi.nlm.nih.gov/pubmed/37319434
http://dx.doi.org/10.1182/blood.2022019537
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author Fei, Ming-Yue
Wang, Yong
Chang, Bin-He
Xue, Kai
Dong, Fangyi
Huang, Dan
Li, Xi-Ya
Li, Zi-Juan
Hu, Cheng-Long
Liu, Ping
Wu, Ji-Chuan
Yu, Peng-Cheng
Hong, Ming-Hua
Chen, Shu-Bei
Xu, Chun-Hui
Chen, Bing-Yi
Jiang, Yi-Lun
Liu, Na
Zhao, Chong
Jin, Jia-Cheng
Hou, Dan
Chen, Xin-Chi
Ren, Yi-Yi
Deng, Chu-Han
Zhang, Jia-Ying
Zong, Li-juan
Wang, Rou-Jia
Gao, Fei-Fei
Liu, Hui
Zhang, Qun-Ling
Wu, Ling-Yun
Yan, Jinsong
Shen, Shuhong
Chang, Chun-Kang
Sun, Xiao-Jian
Wang, Lan
author_facet Fei, Ming-Yue
Wang, Yong
Chang, Bin-He
Xue, Kai
Dong, Fangyi
Huang, Dan
Li, Xi-Ya
Li, Zi-Juan
Hu, Cheng-Long
Liu, Ping
Wu, Ji-Chuan
Yu, Peng-Cheng
Hong, Ming-Hua
Chen, Shu-Bei
Xu, Chun-Hui
Chen, Bing-Yi
Jiang, Yi-Lun
Liu, Na
Zhao, Chong
Jin, Jia-Cheng
Hou, Dan
Chen, Xin-Chi
Ren, Yi-Yi
Deng, Chu-Han
Zhang, Jia-Ying
Zong, Li-juan
Wang, Rou-Jia
Gao, Fei-Fei
Liu, Hui
Zhang, Qun-Ling
Wu, Ling-Yun
Yan, Jinsong
Shen, Shuhong
Chang, Chun-Kang
Sun, Xiao-Jian
Wang, Lan
author_sort Fei, Ming-Yue
collection PubMed
description The bone marrow microenvironment (BMM) can regulate leukemia stem cells (LSCs) via secreted factors. Increasing evidence suggests that dissecting the mechanisms by which the BMM maintains LSCs may lead to the development of effective therapies for the eradication of leukemia. Inhibitor of DNA binding 1 (ID1), a key transcriptional regulator in LSCs, previously identified by us, controls cytokine production in the BMM, but the role of ID1 in acute myeloid leukemia (AML) BMM remains obscure. Here, we report that ID1 is highly expressed in the BMM of patients with AML, especially in BM mesenchymal stem cells, and that the high expression of ID1 in the AML BMM is induced by BMP6, secreted from AML cells. Knocking out ID1 in mesenchymal cells significantly suppresses the proliferation of cocultured AML cells. Loss of Id1 in the BMM results in impaired AML progression in AML mouse models. Mechanistically, we found that Id1 deficiency significantly reduces SP1 protein levels in mesenchymal cells cocultured with AML cells. Using ID1-interactome analysis, we found that ID1 interacts with RNF4, an E3 ubiquitin ligase, and causes a decrease in SP1 ubiquitination. Disrupting the ID1-RNF4 interaction via truncation in mesenchymal cells significantly reduces SP1 protein levels and delays AML cell proliferation. We identify that the target of Sp1, Angptl7, is the primary differentially expression protein factor in Id1-deficient BM supernatant fluid to regulate AML progression in mice. Our study highlights the critical role of ID1 in the AML BMM and aids the development of therapeutic strategies for AML.
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spelling pubmed-106440732023-06-18 The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment Fei, Ming-Yue Wang, Yong Chang, Bin-He Xue, Kai Dong, Fangyi Huang, Dan Li, Xi-Ya Li, Zi-Juan Hu, Cheng-Long Liu, Ping Wu, Ji-Chuan Yu, Peng-Cheng Hong, Ming-Hua Chen, Shu-Bei Xu, Chun-Hui Chen, Bing-Yi Jiang, Yi-Lun Liu, Na Zhao, Chong Jin, Jia-Cheng Hou, Dan Chen, Xin-Chi Ren, Yi-Yi Deng, Chu-Han Zhang, Jia-Ying Zong, Li-juan Wang, Rou-Jia Gao, Fei-Fei Liu, Hui Zhang, Qun-Ling Wu, Ling-Yun Yan, Jinsong Shen, Shuhong Chang, Chun-Kang Sun, Xiao-Jian Wang, Lan Blood Myeloid Neoplasia The bone marrow microenvironment (BMM) can regulate leukemia stem cells (LSCs) via secreted factors. Increasing evidence suggests that dissecting the mechanisms by which the BMM maintains LSCs may lead to the development of effective therapies for the eradication of leukemia. Inhibitor of DNA binding 1 (ID1), a key transcriptional regulator in LSCs, previously identified by us, controls cytokine production in the BMM, but the role of ID1 in acute myeloid leukemia (AML) BMM remains obscure. Here, we report that ID1 is highly expressed in the BMM of patients with AML, especially in BM mesenchymal stem cells, and that the high expression of ID1 in the AML BMM is induced by BMP6, secreted from AML cells. Knocking out ID1 in mesenchymal cells significantly suppresses the proliferation of cocultured AML cells. Loss of Id1 in the BMM results in impaired AML progression in AML mouse models. Mechanistically, we found that Id1 deficiency significantly reduces SP1 protein levels in mesenchymal cells cocultured with AML cells. Using ID1-interactome analysis, we found that ID1 interacts with RNF4, an E3 ubiquitin ligase, and causes a decrease in SP1 ubiquitination. Disrupting the ID1-RNF4 interaction via truncation in mesenchymal cells significantly reduces SP1 protein levels and delays AML cell proliferation. We identify that the target of Sp1, Angptl7, is the primary differentially expression protein factor in Id1-deficient BM supernatant fluid to regulate AML progression in mice. Our study highlights the critical role of ID1 in the AML BMM and aids the development of therapeutic strategies for AML. The American Society of Hematology 2023-09-07 2023-06-18 /pmc/articles/PMC10644073/ /pubmed/37319434 http://dx.doi.org/10.1182/blood.2022019537 Text en © 2023 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Myeloid Neoplasia
Fei, Ming-Yue
Wang, Yong
Chang, Bin-He
Xue, Kai
Dong, Fangyi
Huang, Dan
Li, Xi-Ya
Li, Zi-Juan
Hu, Cheng-Long
Liu, Ping
Wu, Ji-Chuan
Yu, Peng-Cheng
Hong, Ming-Hua
Chen, Shu-Bei
Xu, Chun-Hui
Chen, Bing-Yi
Jiang, Yi-Lun
Liu, Na
Zhao, Chong
Jin, Jia-Cheng
Hou, Dan
Chen, Xin-Chi
Ren, Yi-Yi
Deng, Chu-Han
Zhang, Jia-Ying
Zong, Li-juan
Wang, Rou-Jia
Gao, Fei-Fei
Liu, Hui
Zhang, Qun-Ling
Wu, Ling-Yun
Yan, Jinsong
Shen, Shuhong
Chang, Chun-Kang
Sun, Xiao-Jian
Wang, Lan
The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title_full The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title_fullStr The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title_full_unstemmed The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title_short The non-cell-autonomous function of ID1 promotes AML progression via ANGPTL7 from the microenvironment
title_sort non-cell-autonomous function of id1 promotes aml progression via angptl7 from the microenvironment
topic Myeloid Neoplasia
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10644073/
https://www.ncbi.nlm.nih.gov/pubmed/37319434
http://dx.doi.org/10.1182/blood.2022019537
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