Wenjie Cai, Xicheng Liu, Sergio Barajas, Shiyu Xiao, Sasidhar Vemula, Hongxia Chen, Yuxia Yang, Christopher Bochers, Danielle Henley, Sheng Liu, Yuzhi Jia, Michelle Hong, Tiffany M. Mays, Maegan L. Capitano, Huiping Liu, Peng Ji, Zhonghua Gao, Diego Pasini, Jun Wan, Feng Yue, Leonidas C. Platanias, Rongwen Xi, Sisi Chen, Yan Liu
{"title":"多聚胞群蛋白Mel18通过抑制自我更新和增殖基因的转录抑制造血干细胞的自我更新","authors":"Wenjie Cai, Xicheng Liu, Sergio Barajas, Shiyu Xiao, Sasidhar Vemula, Hongxia Chen, Yuxia Yang, Christopher Bochers, Danielle Henley, Sheng Liu, Yuzhi Jia, Michelle Hong, Tiffany M. Mays, Maegan L. Capitano, Huiping Liu, Peng Ji, Zhonghua Gao, Diego Pasini, Jun Wan, Feng Yue, Leonidas C. Platanias, Rongwen Xi, Sisi Chen, Yan Liu","doi":"10.1038/s41375-024-02462-w","DOIUrl":null,"url":null,"abstract":"<p>Polycomb group (PcG) proteins play important roles in hematopoietic stem cell (HSC) self-renewal. Mel18 and Bmi1 are homologs of the PCGF subunit within the Polycomb repressive complex 1 (PRC1). Bmi1 (PCGF4) enhances HSC self-renewal and promotes terminal differentiation. However, the role of Mel18 (PCGF2) in hematopoiesis is not fully understood and how Mel18 regulates gene transcription in HSCs remains elusive. We found that acute deletion of <i>Mel18</i> in the hematopoietic compartment significantly increased the frequency of functional HSCs in the bone marrow. Furthermore, we demonstrate that Mel18 inhibits HSC self-renewal and proliferation. RNA-seq studies revealed that HSC self-renewal and proliferation gene signatures are enriched in <i>Mel18</i><sup><i>−/−</i></sup> hematopoietic stem and progenitors (HSPCs) compared to <i>Mel18</i><sup><i>+/+</i></sup> HSPCs. Notably, ATAC-seq revealed increased chromatin accessibility at genes important for HSC self-renewal, whereas CUT&RUN showed decreased enrichment of H2AK119ub1 at genes important for proliferation, leading to increased expression of both <i>Hoxb4</i> and <i>Cdk4</i> in <i>Mel18</i><sup><i>−/−</i></sup> HSPCs. Thus, we demonstrate that Mel18 inhibits hematopoietic stem cell self-renewal through repressing the transcription of genes important for HSC self-renewal and proliferation.</p>","PeriodicalId":18109,"journal":{"name":"Leukemia","volume":"40 1","pages":""},"PeriodicalIF":12.8000,"publicationDate":"2024-11-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Polycomb group protein Mel18 inhibits hematopoietic stem cell self-renewal through repressing the transcription of self-renewal and proliferation genes\",\"authors\":\"Wenjie Cai, Xicheng Liu, Sergio Barajas, Shiyu Xiao, Sasidhar Vemula, Hongxia Chen, Yuxia Yang, Christopher Bochers, Danielle Henley, Sheng Liu, Yuzhi Jia, Michelle Hong, Tiffany M. Mays, Maegan L. Capitano, Huiping Liu, Peng Ji, Zhonghua Gao, Diego Pasini, Jun Wan, Feng Yue, Leonidas C. 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RNA-seq studies revealed that HSC self-renewal and proliferation gene signatures are enriched in <i>Mel18</i><sup><i>−/−</i></sup> hematopoietic stem and progenitors (HSPCs) compared to <i>Mel18</i><sup><i>+/+</i></sup> HSPCs. Notably, ATAC-seq revealed increased chromatin accessibility at genes important for HSC self-renewal, whereas CUT&RUN showed decreased enrichment of H2AK119ub1 at genes important for proliferation, leading to increased expression of both <i>Hoxb4</i> and <i>Cdk4</i> in <i>Mel18</i><sup><i>−/−</i></sup> HSPCs. 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Polycomb group protein Mel18 inhibits hematopoietic stem cell self-renewal through repressing the transcription of self-renewal and proliferation genes
Polycomb group (PcG) proteins play important roles in hematopoietic stem cell (HSC) self-renewal. Mel18 and Bmi1 are homologs of the PCGF subunit within the Polycomb repressive complex 1 (PRC1). Bmi1 (PCGF4) enhances HSC self-renewal and promotes terminal differentiation. However, the role of Mel18 (PCGF2) in hematopoiesis is not fully understood and how Mel18 regulates gene transcription in HSCs remains elusive. We found that acute deletion of Mel18 in the hematopoietic compartment significantly increased the frequency of functional HSCs in the bone marrow. Furthermore, we demonstrate that Mel18 inhibits HSC self-renewal and proliferation. RNA-seq studies revealed that HSC self-renewal and proliferation gene signatures are enriched in Mel18−/− hematopoietic stem and progenitors (HSPCs) compared to Mel18+/+ HSPCs. Notably, ATAC-seq revealed increased chromatin accessibility at genes important for HSC self-renewal, whereas CUT&RUN showed decreased enrichment of H2AK119ub1 at genes important for proliferation, leading to increased expression of both Hoxb4 and Cdk4 in Mel18−/− HSPCs. Thus, we demonstrate that Mel18 inhibits hematopoietic stem cell self-renewal through repressing the transcription of genes important for HSC self-renewal and proliferation.
期刊介绍:
Title: Leukemia
Journal Overview:
Publishes high-quality, peer-reviewed research
Covers all aspects of research and treatment of leukemia and allied diseases
Includes studies of normal hemopoiesis due to comparative relevance
Topics of Interest:
Oncogenes
Growth factors
Stem cells
Leukemia genomics
Cell cycle
Signal transduction
Molecular targets for therapy
And more
Content Types:
Original research articles
Reviews
Letters
Correspondence
Comments elaborating on significant advances and covering topical issues