4.3 Article

Polycomb protein RING1A limits hematopoietic differentiation in myelodysplastic syndromes

Journal

ONCOTARGET
Volume 8, Issue 70, Pages 115002-115017

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.22839

Keywords

myelodysplastic syndromes; polycomb repressive complexes; epigenetic regulation; hematopoietic stem cells; cellular differentiation

Funding

  1. Deutsche Jose Carreras Leukaemie Stiftung [DJCLS R 14/16]
  2. MINECO [BFU2015-66559-P, FJCI-2014-22983]
  3. MINECO-ISCIII [PIE16/00011]
  4. Radiumhemmets forskningsfonder
  5. Swedish Cancer foundation
  6. Swedish Research council
  7. German Cancer Consortium DKTK
  8. German Research Council DFG [FOR2033 Go 713/2-1, SFB 1243 A09]
  9. AFM-Telethon [AFM-18738]
  10. Marie Sklodowska Curie Training network 'ChroMe' [H2020-MSCA-ITN-2015-675610]
  11. AGAUR [2014-SGR-35]
  12. 'La Caixa' Foundation
  13. Fundacio Internacional Josep Carreras, Celgene Spain
  14. CERCA Programme / Generalitat de Catalunya
  15. Leukaemia & Lymphoma NI [R2536CNR] Funding Source: researchfish
  16. Public Health Agency [SPI/3315/06] Funding Source: researchfish

Ask authors/readers for more resources

Genetic lesions affecting epigenetic regulators are frequent in myelodysplastic syndromes (MDS). Polycomb proteins are key epigenetic regulators of differentiation and stemness that act as two multimeric complexes termed polycomb repressive complexes 1 and 2, PRC1 and PRC2, respectively. While components and regulators of PRC2 such as ASXL1 and EZH2 are frequently mutated in MDS and AML, little is known about the role of PRC1. To analyze the role of PRC1, we have taken a functional approach testing PRC1 components in loss-and gain-of-function experiments that we found overexpressed in advanced MDS patients or dynamically expressed during normal hematopoiesis. This approach allowed us to identify the enzymatically active component RING1A as the key PRC1 component in hematopoietic stem cells and MDS. Specifically, we found that RING1A is expressed in CD34(+) bone marrow progenitor cells and further overexpressed in high-risk MDS patients. Knockdown of RING1A in an MDS-derived AML cell line facilitated spontaneous and retinoic acid-induced differentiation. Similarly, inactivation of RING1A in primary CD34(+) cells augmented erythroid differentiation. Treatment with a small compound RING1 inhibitor reduced the colony forming capacity of CD34(+) cells from MDS patients and healthy controls. In MDS patients higher RING1A expression associated with an increased number of dysplastic lineages and blasts. Our data suggests that RING1A is deregulated in MDS and plays a role in the erythroid development defect.

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