4.5 Article

WRAD: enabler of the SET1-family of H3K4 methyltransferases

Journal

BRIEFINGS IN FUNCTIONAL GENOMICS
Volume 11, Issue 3, Pages 217-226

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/bfgp/els017

Keywords

SET1; MLL; WDR5; RbBP5; ASH2L; DPY-30

Funding

  1. Don Monti Memorial Research Foundation
  2. Laurie Strauss Leukemia Foundation
  3. Sass Foundation
  4. Edward P. Evans Foundation
  5. F. M. Kirby Foundation
  6. American Cancer Society [RSG-10-242-LIB]
  7. Gabrielle's Angel Foundation
  8. Lauri Strauss Foundation
  9. National Institute of Health [HL090036]
  10. Norris Cotton Cancer Center [CA023108]

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Methylation of histone H3 at lysine 4 (H3K4) is a conserved feature of active chromatin catalyzed by methyltransferases of the SET1-family (SET1A, SET1B, MLL1, MLL2, MLL3 and MLL4 in humans). These enzymes participate in diverse gene regulatory networks with a multitude of known biological functions, including direct involvement in several human disease states. Unlike most lysine methyltransferases, SET1-family enzymes are only fully active in the context of a multi-subunit complex, which includes a protein module comprised of WDR5, RbBP5, ASH2L and DPY-30 (WRAD). These proteins bind in close proximity to the catalytic SET domain of SET1-family enzymes and stimulate H3K4 methyltransferase activity. The mechanism by which WRAD promotes catalysis involves elements of allosteric control and possibly the utilization of a second H3K4 methyltransferase active site present within WRAD itself. WRAD components also engage in physical interactions that recruit SET1-family proteins to target sites on chromatin. Here, the known molecular mechanisms through which WRAD enables the function of SET1-related enzymes will be reviewed.

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