Oxidative stress-induced assembly of PML nuclear bodies controls sumoylation of partner proteins. - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Journal of Cell Biology Année : 2014

Oxidative stress-induced assembly of PML nuclear bodies controls sumoylation of partner proteins.

Orestis Faklaris

Résumé

The promyelocytic leukemia (PML) protein organizes PML nuclear bodies (NBs), which are stress-responsive domains where many partner proteins accumulate. Here, we clarify the basis for NB formation and identify stress-induced partner sumoylation as the primary NB function. NB nucleation does not rely primarily on intermolecular interactions between the PML SUMO-interacting motif (SIM) and SUMO, but instead results from oxidation-mediated PML multimerization. Oxidized PML spherical meshes recruit UBC9, which enhances PML sumoylation, allow partner recruitment through SIM interactions, and ultimately enhance partner sumoylation. Intermolecular SUMO-SIM interactions then enforce partner sequestration within the NB inner core. Accordingly, oxidative stress enhances NB formation and global sumoylation in vivo. Some NB-associated sumoylated partners also become polyubiquitinated by RNF4, precipitating their proteasomal degradation. As several partners are protein-modifying enzymes, NBs could act as sensors that facilitate and confer oxidative stress sensitivity not only to sumoylation but also to other post-translational modifications, thereby explaining alterations of stress response upon PML or NB loss.

Dates et versions

hal-00992287 , version 1 (16-05-2014)

Identifiants

Citer

Umut Sahin, Omar Ferhi, Marion Jeanne, Shirine Benhenda, Caroline Berthier, et al.. Oxidative stress-induced assembly of PML nuclear bodies controls sumoylation of partner proteins.. Journal of Cell Biology, 2014, 204 (6), pp.931-45. ⟨10.1083/jcb.201305148⟩. ⟨hal-00992287⟩
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