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TET proteins and 5-methylcytosine oxidation in hematological cancers

  • Myunggon Ko
  • , Jungeun An
  • , William A. Pastor
  • , Sergei B. Koralov
  • , Klaus Rajewsky
  • , Anjana Rao*
  • *Corresponding author for this work
  • La Jolla Institute for Allergy and Immunology
  • University of California at Los Angeles
  • New York University
  • Max Delbrück Center for Molecular Medicine in the Helmholtz Association
  • University of California at San Diego
  • Sanford Consortium for Regenerative Medicine

Research output: Contribution to journalJournal articlepeer-review

Abstract

Summary: DNA methylation has pivotal regulatory roles in mammalian development, retrotransposon silencing, genomic imprinting, and X-chromosome inactivation. Cancer cells display highly dysregulated DNA methylation profiles characterized by global hypomethylation in conjunction with hypermethylation of promoter CpG islands that presumably lead to genome instability and aberrant expression of tumor suppressor genes or oncogenes. The recent discovery of ten-eleven-translocation (TET) family dioxygenases that oxidize 5mC to 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC), and 5-carboxylcytosine (5caC) in DNA has led to profound progress in understanding the mechanism underlying DNA demethylation. Among the three TET genes, TET2 recurrently undergoes inactivating mutations in a wide range of myeloid and lymphoid malignancies. TET2 functions as a bona fide tumor suppressor particularly in the pathogenesis of myeloid malignancies resembling chronic myelomonocytic leukemia (CMML) and myelodysplastic syndromes (MDS) in human. Here we review diverse functions of TET proteins and the novel epigenetic marks that they generate in DNA methylation/demethylation dynamics and normal and malignant hematopoietic differentiation. The impact of TET2 inactivation in hematopoiesis and various mechanisms modulating the expression or activity of TET proteins are also discussed. Furthermore, we also present evidence that TET2 and TET3 collaborate to suppress aberrant hematopoiesis and hematopoietic transformation. A detailed understanding of the normal and pathological functions of TET proteins may provide new avenues to develop novel epigenetic therapies for treating hematological malignancies.

Original languageEnglish
Pages (from-to)6-21
Number of pages16
JournalImmunological Reviews
Volume263
Issue number1
DOIs
StatePublished - 2015.01.1

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • 5-methylcytosine oxidation
  • Hematopoiesis
  • Lymphoid malignancies
  • Malignant transformation
  • Myeloid malignancies
  • TET proteins

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