4.7 Article

Context dependent effects of ascorbic acid treatment in TET2 mutant myeloid neoplasia

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COMMUNICATIONS BIOLOGY
卷 3, 期 1, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s42003-020-01220-9

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资金

  1. NIH [R35HL135795, RO1 HL132071, HL145883, 1S10OD023436-01]
  2. Leukemia and Lymphoma Society [6582-20-LLS, M1701632]
  3. MDS Research Taub Foundation
  4. Edward P. Evans Foundation
  5. 2015 Basic Research Grant
  6. American Cancer Society Research Scholar Grant [123436-RSG-12-159-01-DMC]
  7. Department of Veterans Affairs [BX001820]
  8. Polish National Science Centre [DEC-2015/19/B/NZ5/02208, DEC-2017/27/B/NZ7/01487]

向作者/读者索取更多资源

Loss-of-function TET2 mutations (TET2(MT)) are common in myeloid neoplasia. TET2, a DNA dioxygenase, requires 2-oxoglutarate and Fe(II) to oxidize 5-methylcytosine. TET2(MT) thus result in hypermethylation and transcriptional repression. Ascorbic acid (AA) increases dioxygenase activity by facilitating Fe(III)/Fe(II) redox reaction and may alleviate some biological consequences of TET2(MT) by restoring dioxygenase activity. Here, we report the utility of AA in the prevention of TET2(MT) myeloid neoplasia (MN), clarify the mechanistic underpinning of the TET2-AA interactions, and demonstrate that the ability of AA to restore TET2 activity in cells depends on N- and C-terminal lysine acetylation and nature of TET2(MT). Consequently, pharmacologic modulation of acetyltransferases and histone deacetylases may regulate TET dioxygenase-dependent AA effects. Thus, our study highlights the contribution of factors that may enhance or attenuate AA effects on TET2 and provides a rationale for novel therapeutic approaches including combinations of AA with class I/II HDAC inhibitor or sirtuin activators in TET2(MT) leukemia. Using TET2- and ascorbic acid deficient model systems Guan et al show that long term treatment with ascorbic acid delays myeloid neoplasia in mice and reveal a complex interplay of post-translational modification of lysine residues that modulate TET2 activity in neoplastic evolution.

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