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Mouse Apg16L, a novel WD-repeat protein, targets to the autophagic isolation membrane with the Apg12-Apg5 conjugate

Journal of Cell Science · 2003 · Vol. 116(9) · pp. 1679–1688
Noboru MizushimaAkiko KumaYoshinori KobayashiAkitsugu YamamotoMasami MatsubaeToshifumi TakaoTohru NatsumeYoshinori OhsumiTamotsu Yoshimori

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 approximately 350 kDa multimeric complex. We demonstrate that the mouse Apg12-Apg5 conjugate forms a approximately 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 approximately 800 kDa complex is expected to function in autophagosome formation, further interacting with other proteins in mammalian cells.

Autophagy in Disease and TherapyCellular transport and secretionEndoplasmic Reticulum Stress and DiseaseBiologyAutophagosomeYeastCell biologyCytoplasmAutophagyLysosomeVacuoleConjugateBiochemistry

MeSH terms

Autophagy-Related ProteinsAutophagy-Related Protein 12Amino Acid SequenceAnimalsAutophagyBase SequenceCarrier ProteinsCells, CulturedHeLa CellsHistone DeacetylasesHumansIntracellular MembranesMembrane ProteinsMolecular Sequence DataMolecular Weight

Funding

  • Ministry of Education, Culture, Sports, Science and Technology
  • University of Tokyo
  • Japan Society for the Promotion of Science
  • Institute of Medical Science, University of Tokyo
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