TBC1D15 potentiates lysosomal regeneration from damaged membranes
Bhattacharya, A.; Mukherjee, R.; Kuncha, S. K.; Brunstein, M.; Rathore, R.; Junek, S.; Munch, C.; Dikic, I.
Show abstract
Acute lysosomal membrane damage reduces the cellular population of functional lysosomes. However, these damaged lysosomes have a remarkable recovery potential independent of lysosomal biogenesis and remain unaffected in TFEB/TFE3-depleted cells. We combined proximity labelling based proteomics, biochemistry and high-resolution microscopy to unravel a new lysosomal membrane regeneration pathway which is dependent on ATG8, lysosomal membrane protein LIMP2, the Rab7 GAP TBC1D15, and proteins required for autophagic lysosomal reformation (ALR) including Dynamin2, Kinesin5B and Clathrin. Upon lysosomal damage, LIMP2 act as a lysophagy receptor to bind ATG8, which in turn recruits TBC1D15 to damaged membranes. TBC1D15 hydrolyses Rab7-GTP to segregate the damaged lysosomal mass and provides a scaffold to assemble and stabilize the ALR machinery, potentiating the formation of lysosomal tubules and subsequent Dynamin2-dependent scission. TBC1D15-mediated lysosome regeneration was also observed in a cell culture model of oxalate nephropathy.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Rabaptin5 targets autophagy to damaged early endosomes and Salmonella containing vacuoles by interaction with FIP200 and ATG16L1 98%
- Mitochondrial translocation of TFEB regulates complex I and inflammation 95%
- The USP12/46 deubiquitinases protect integrins from ESCRT-mediated lysosomal degradation 95%
Similar papers in this journal
- A heterodimeric SNX4:SNX7 SNX-BAR autophagy complex coordinates ATG9A trafficking for efficient autophagosome assembly 96%
- ACSL3 is a novel GABARAPL2 interactor that links ufmylation and lipid droplet biogenesis 96%
- The lipid transfer proteins Nir2 and Nir3 sustain phosphoinositide signaling and actin dynamics during phagocytosis 96%
"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.