4.8 Article

Cellular stressors contribute to the expansion of hematopoietic clones of varying leukemic potential

Journal

NATURE COMMUNICATIONS
Volume 9, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-02858-0

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Funding

  1. National Institutes of Health, National Cancer Institute [PO1 CA101937, P50 CA171963, K08 CA197369]
  2. National Cancer Institute [P30 CA91842]
  3. NATIONAL CANCER INSTITUTE [P50CA171963, R35CA197561, R33CA217700, K08CA197369, R50CA211782, P30CA091842] Funding Source: NIH RePORTER

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Hematopoietic clones harboring specific mutations may expand over time. However, it remains unclear how different cellular stressors influence this expansion. Here we characterize clonal hematopoiesis after two different cellular stressors: cytotoxic therapy and hematopoietic transplantation. Cytotoxic therapy results in the expansion of clones carrying mutations in DNA damage response genes, including TP53 and PPM1D. Analyses of sorted populations show that these clones are typically multilineage and myeloid-biased. Following autologous transplantation, most clones persist with stable chimerism. However, DNMT3A mutant clones often expand, while PPM1D mutant clones often decrease in size. To assess the leukemic potential of these expanded clones, we genotyped 134 t-AML/t-MDS samples. Mutations in non-TP53 DNA damage response genes are infrequent in t-AML/t-MDS despite several being commonly identified after cytotoxic therapy. These data suggest that different hematopoietic stressors promote the expansion of distinct long-lived clones, carrying specific mutations, whose leukemic potential depends partially on the mutations they harbor.

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