4.7 Article

Ikaros tumor suppressor function includes induction of active enhancers and super-enhancers along with pioneering activity

期刊

LEUKEMIA
卷 33, 期 11, 页码 2720-2731

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41375-019-0474-0

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资金

  1. PhRMA foundation
  2. Hyundai Hope on Wheels Scholar Grant
  3. Four Diamonds Fund of the Pennsylvania State University College of Medicine
  4. Bear Necessities Pediatric Cancer Foundation
  5. Alex's Lemonade Stand Foundation
  6. John Wawrynovic Leukemia Research Scholar Endowment
  7. St. Baldrick's Foundation
  8. Bear Necessities
  9. [R01CA209829]
  10. [R01CA213912]
  11. [F30CA221109]
  12. [R01DK110108]
  13. [R01CA204044]
  14. [R35GM124820]
  15. [R01HG009906]

向作者/读者索取更多资源

Ikaros encodes a transcription factor that functions as a tumor suppressor in T-cell acute lymphoblastic leukemia (T-ALL). The mechanisms through which Ikaros regulates gene expression and cellular proliferation in T-ALL are unknown. Reintroduction of Ikaros into Ikaros-null T-ALL cells resulted in cessation of cellular proliferation and induction of T-cell differentiation. We performed dynamic, global, epigenomic, and gene expression analyses to determine the mechanisms of Ikaros tumor suppressor activity. Our results identified novel Ikaros functions in the epigenetic regulation of gene expression: Ikaros directly regulates de novo formation and depletion of enhancers, de novo formation of active enhancers and activation of poised enhancers; Ikaros directly induces the formation of super-enhancers; and Ikaros demonstrates pioneering activity by directly regulating chromatin accessibility. Dynamic analyses demonstrate the long-lasting effects of Ikaros DNA binding on enhancer activation, de novo formation of enhancers and super-enhancers, and chromatin accessibility. Our results establish that Ikaros' tumor suppressor function occurs via global regulation of the enhancer and super-enhancer landscape and through pioneering activity. Expression analysis identified a large number of novel signaling pathways that are directly regulated by Ikaros and Ikaros-induced enhancers, and that are responsible for the cessation of proliferation and induction of T-cell differentiation in T-ALL cells.

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