The p97-UBXD8 complex maintains peroxisome abundance by suppressing pexophagy
Montes, I. D.; Amirthagunanathan, S.; Joshi, A. S.; Raman, M. M.
Show abstract
Peroxisomes are vital organelles involved in key metabolic functions in eukaryotic cells. Their significance is highlighted by peroxisome biogenesis disorders; severe childhood diseases marked by disrupted lipid metabolism. One mechanism regulating peroxisome abundance is through selective ubiquitylation of peroxisomal membrane proteins that triggers peroxisome degradation via selective autophagy (pexophagy). However, the mechanisms regulating pexophagy remain poorly understood in mammalian cells. Here we show that the evolutionarily conserved AAA-ATPase p97 and its membrane embedded adaptor UBXD8 are essential for maintaining peroxisome abundance. From quantitative proteomic studies we reveal that loss of UBXD8 affects many peroxisomal proteins. We find depletion of UBXD8 results in a loss of peroxisomes in a manner that is independent of the known role of UBXD8 in ER associated degradation (ERAD). Loss of UBXD8 or inhibition of p97 increases peroxisomal turnover through autophagy and can be rescued by depleting key autophagy proteins or overexpressing the deubiquitylating enzyme USP30. Furthermore, we find increased ubiquitylation of the peroxisomal membrane protein PMP70 in cells lacking UBXD8 or p97. Collectively, our findings identify a new role for the p97-UBXD8 complex in regulating peroxisome abundance by suppressing pexophagy.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Selective clearance of the inner nuclear membrane protein emerin by vesicular transport during ER stress 96%
- The peroxisomal exportomer directly inhibits phosphoactivation of the pexophagy receptor Atg36 to suppress pexophagy in yeast 95%
- Pathogenic variants of sphingomyelin synthase SMS2 disrupt lipid landscapes in the secretory pathway 95%
Similar papers in this journal
Similar papers in this journal
- The selective autophagy receptor p62 and the heat shock protein HSP27 facilitate lysophagy via the formation of phase-separated condensates 96%
- ER-embedded UBE2J1/RNF26 ubiquitylation complex in spatio-temporal control of the endolysosomal pathway 96%
- Rhomboid protease RHBDL4 promotes retrotranslocation of aggregation-prone proteins for degradation 96%
Similar papers in this journal
- A heterodimeric SNX4:SNX7 SNX-BAR autophagy complex coordinates ATG9A trafficking for efficient autophagosome assembly 95%
- ACSL3 is a novel GABARAPL2 interactor that links ufmylation and lipid droplet biogenesis 95%
- Mitochondrial antiviral-signalling protein is a client of the BAG6 protein quality control complex 95%
Similar papers in this journal
- Differential reliance of CTD-nuclear envelope phosphatase 1 on its regulatory subunit in ER lipid synthesis and storage 95%
- The TIM22 complex regulates mitochondrial one-carbon metabolism by mediating the import of Sideroflexins 94%
- Interactions between TULP3 tubby domain cargo site and ARL13B amphipathic helix promote lipidated protein transport to cilia 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.