4.8 Article

Distinct evolution and dynamics of epigenetic and genetic heterogeneity in acute myeloid leukemia

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NATURE MEDICINE
卷 22, 期 7, 页码 792-799

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/nm.4125

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资金

  1. Starr Cancer Consortium [I4-A442, I7-A765, I9-A9-071]
  2. Irma T. Hirschl Charitable Trust
  3. Monique Weill-Caulier Charitable Trust
  4. Bert L. and N. Kuggie Vallee Foundation
  5. WorldQuant Foundation
  6. Pershing Square Sohn Cancer Research Alliance
  7. NASA [NNX14AH50G]
  8. LLS SCOR [7006-13]
  9. NCI [K08CA169055]
  10. American Society of Hematology award under the ASH-AMFDP partnership [ASHAMFDP-20121]
  11. Robert Wood Johnson Foundation
  12. ASH/EHA TRTH
  13. Doris Duke Medical Foundation
  14. Leukemia and Lymphoma Society Translational Research Program
  15. Geoffrey Beene Cancer Center
  16. Leukaemia and Lymphoma Research award
  17. German Research Foundation (DFG) [SFB 1074]
  18. DFG Heisenberg-Stipendium [BU 1339/3-1]
  19. Australian National Health and Medical Research Council
  20. Royal Adelaide Hospital Contributing Haematologists Fund
  21. US National Institutes of Health [R01CA102031, R01NS076465]
  22. Leukemia Fighters funding
  23. Bill & Melinda Gates Foundation - Grand Challenges Explorations Initiative [OPP1151054] Funding Source: researchfish

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Genetic heterogeneity contributes to clinical outcome and progression of most tumors, but little is known about allelic diveisity for epigenetic compartments, and almost no data exist for acute myeloid leukemia (AML). We examined epigenetic heterogeneity as assessed by cytosine methylation within defined genomic loci with four CpGs (epialleles), somatic mutations, and transcriptomes of AML patient samples at serial time points. We observed that epigenetic allele burden is linked to inferior outcome and varies considerably during disease progression. Epigenetic and genetic allelic burden and patterning followed different patterns and kinetics during disease progression. We observed a subset of AMLs with high epiallele and low somatic mutation burden at diagnosis, a subset with high somatic mutation and lower epiallele burdens at diagnosis, and a subset with a mixed profile, suggesting distinct modes of tumor heterogeneity. Genes linked to promoter-associated epiallele shifts during tumor progression showed increased single-cell transcriptional variance and differential expression, suggesting functional impact on gene regulation. Thus, genetic and epigenetic heterogeneity can occur with distinct kinetics likely to affect the biological and clinical features of tumors.

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