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Reversing histone methylation

Author

Listed:
  • Andrew J. Bannister

    (Gurdon Institute and Department of Pathology)

  • Tony Kouzarides

    (Gurdon Institute and Department of Pathology)

Abstract

Histones package DNA, and post-translational modifications of histones can regulate access to DNA. Until recently, histone methylation—unlike all other histone modifications—was considered a permanent mark. The discovery of enzymes that reverse the methylation of lysines and arginines challenges our current thinking on the unique nature of histone methylation, and substantially increases the complexity of histone modification pathways.

Suggested Citation

  • Andrew J. Bannister & Tony Kouzarides, 2005. "Reversing histone methylation," Nature, Nature, vol. 436(7054), pages 1103-1106, August.
  • Handle: RePEc:nat:nature:v:436:y:2005:i:7054:d:10.1038_nature04048
    DOI: 10.1038/nature04048
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    Cited by:

    1. Shao-Ping Shi & Jian-Ding Qiu & Xing-Yu Sun & Sheng-Bao Suo & Shu-Yun Huang & Ru-Ping Liang, 2012. "PMeS: Prediction of Methylation Sites Based on Enhanced Feature Encoding Scheme," PLOS ONE, Public Library of Science, vol. 7(6), pages 1-11, June.

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