Mouse Apg16L, a novel WD-repeat protein, targets to the autophagic isolation membrane with the Apg12-Apg5 conjugate
Top Cited Papers
- 1 May 2003
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 116 (9) , 1679-1688
- https://doi.org/10.1242/jcs.00381
Abstract
Macroautophagy is the major intracellular degradation system delivering cytoplasmic components to the lysosome/vacuole. We have shown that, in yeast and mammalian cells, the Apg12-Apg5 protein conjugate, which is formed by a ubiquitin-like system, is essential for autophagosome formation. In yeast, the Apg12-Apg5 conjugate interacts with a small coiled-coil protein, Apg16, to form a ∼350 kDa multimeric complex. We demonstrate that the mouse Apg12-Apg5 conjugate forms a ∼800 kDa protein complex containing a novel WD-repeat protein. Because the N-terminal region of this novel protein shows homology with yeast Apg16, we have designated it mouse Apg16-like protein (Apg16L). Apg16L, however, has a large C-terminal domain containing seven WD repeats that is absent from yeast Apg16. Apg16L interacts with both Apg5 and additional Apg16L monomers; neither interaction, however, depends on the WD-repeat domain. In conjunction with Apg12-Apg5, Apg16L associates with the autophagic isolation membrane for the duration of autophagosome formation. Because these features are similar to yeast Apg16, we concluded Apg16L is the functional counterpart of the yeast Apg16. We also found that membrane targeting of Apg16L requires Apg5 but not Apg12. Because WD-repeat proteins provide a platform for protein-protein interactions, the ∼800 kDa complex is expected to function in autophagosome formation, further interacting with other proteins in mammalian cells.Keywords
This publication has 30 references indexed in Scilit:
- Formation of the ∼350-kDa Apg12-Apg5·Apg16 Multimeric Complex, Mediated by Apg16 Oligomerization, Is Essential for Autophagy in YeastJournal of Biological Chemistry, 2002
- Autophagy as a Regulated Pathway of Cellular DegradationScience, 2000
- A ubiquitin-like system mediates protein lipidationNature, 2000
- LC3, a mammalian homologue of yeast Apg8p, is localized in autophagosome membranes after processingThe EMBO Journal, 2000
- The Reversible Modification Regulates the Membrane-Binding State of Apg8/Aut7 Essential for Autophagy and the Cytoplasm to Vacuole Targeting PathwayThe Journal of cell biology, 2000
- Apg7p/Cvt2p Is Required for the Cytoplasm-to-Vacuole Targeting, Macroautophagy, and Peroxisome Degradation PathwaysMolecular Biology of the Cell, 1999
- A New Protein Conjugation System in HumanJournal of Biological Chemistry, 1998
- A protein conjugation system essential for autophagyNature, 1998
- Autophagic proteolysis: control and specificityJournal of Molecular Histology, 1997
- Autophagy and related mechanisms of lysosome-mediated protein degradationTrends in Cell Biology, 1994