4.8 Article

Ubiquitylation of p62/sequestosome1 activates its autophagy receptor function and controls selective autophagy upon ubiquitin stress

Journal

CELL RESEARCH
Volume 27, Issue 5, Pages 657-674

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/cr.2017.40

Keywords

autophagy receptor; ubiquitylation; heat shock; dynamic light scattering; ubiquitin; selective autophagy

Categories

Funding

  1. Strategic Priority Research Program of the Chinese Academy of Sciences [XDB19000000]
  2. National Natural Science Foundation of China [31270828, 31070678, 81525019]
  3. Ministry of Science and Technology of China [2012CB910800, 2013CB910900]
  4. Shanghai Institute of Organic Chemistry, CAS
  5. Instrument Developing Project of the Chinese Academy of Sciences [YZ201339]
  6. NIH [GM095526]
  7. LOEWE grant Ub-Net Frankfurt
  8. European Research Council/ERC [250241-LineUb]
  9. Grants-in-Aid for Scientific Research [25111006] Funding Source: KAKEN

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Alterations in cellular ubiquitin (Ub) homeostasis, known as Ub stress, feature and affect cellular responses in multiple conditions, yet the underlying mechanisms are incompletely understood. Here we report that autophagy receptor p62/sequestosome-1 interacts with E2 Ub conjugating enzymes, UBE2D2 and UBE2D3. Endogenous p62 undergoes E2-dependent ubiquitylation during upregulation of Ub homeostasis, a condition termed as Ub(+) stress, that is intrinsic to Ub overexpression, heat shock or prolonged proteasomal inhibition by bortezomib, a chemotherapeutic drug. Ubiquitylation of p62 disrupts dimerization of the UBA domain of p62, liberating its ability to recognize polyubiquitylated cargoes for selective autophagy. We further demonstrate that this mechanism might be critical for autophagy activation upon Ub(+) stress conditions. Delineation of the mechanism and regulatory roles of p62 in sensing Ub stress and controlling selective autophagy could help to understand and modulate cellular responses to a variety of endogenous and environmental challenges, potentially opening a new avenue for the development of therapeutic strategies against autophagy-related maladies.

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