4.8 Article

OTUD4 Is a Phospho-Activated K63 Deubiquitinase that Regulates MyD88-Dependent Signaling

Journal

MOLECULAR CELL
Volume 69, Issue 3, Pages 505-+

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2018.01.009

Keywords

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Funding

  1. Monsanto Graduate Program Fellowship
  2. NIH Cell and Molecular Biology Training Grant [5T32GM007067-40]
  3. NCI Cancer Center Support Grant [P30 CA091842]
  4. NIH [R01 AI113118, K08 CA158133, R01 CA193318]
  5. Career Award for Medical Scientists from the Burroughs Wellcome Fund [1006898.01]
  6. American Cancer Society [IRG-58-010-56]
  7. Alvin Siteman Cancer Research Fund [15-FY17-01]
  8. Siteman Investment Program
  9. Children's Discovery Institute of St. Louis Children's Hospital [MC-II-2015-453]

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Ubiquitination is a major mechanism that regulates numerous cellular processes, including autophagy, DNA damage signaling, and inflammation. While hundreds of ubiquitin ligases exist to conjugate ubiquitin onto substrates, approximately 100 deubiquitinases are encoded by the human genome. Thus, deubiquitinases are likely regulated by unidentified mechanisms to target distinct substrates and cellular functions. Here, we demonstrate that the deubiquitinase OTUD4, which nominally encodes a K48specific deubiquitinase, is phosphorylated near its catalytic domain, activating a latent K63-specific deubiquitinase. Besides phosphorylation, this latter activity requires an adjacent ubiquitin-interacting motif, which increases the affinity of OTUD4 for K63-linked chains. We reveal the Toll-like receptor (TLR)-associated factor MyD88 as a target of this K63 deubiquitinase activity. Consequently, TLRmediated activation of NF-kB is negatively regulated by OTUD4, and macrophages from Otud4(-/-) mice exhibit increased inflammatory signaling upon TLR stimulation. Our results reveal insights into how a deubiquitinase may modulate diverse processes through post-translational modification.

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