Higher-order assemblies of oligomeric cargo receptor complexes form the membrane scaffold of the Cvt vesicle.
File(s)Bertipaglia_et_al-2016-EMBO_reports.pdf (2.99 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Selective autophagy is the mechanism by which large cargos are specifically sequestered for degradation. The structural details of cargo and receptor assembly giving rise to autophagic vesicles remain to be elucidated. We utilize the yeast cytoplasm-to-vacuole targeting (Cvt) pathway, a prototype of selective autophagy, together with a multi-scale analysis approach to study the molecular structure of Cvt vesicles. We report the oligomeric nature of the major Cvt cargo Ape1 with a combined 2.8 Å X-ray and negative stain EM structure, as well as the secondary cargo Ams1 with a 6.3 Å cryo-EM structure. We show that the major dodecameric cargo prApe1 exhibits a tendency to form higher-order chain structures that are broken upon interaction with the receptor Atg19 in vitro The stoichiometry of these cargo-receptor complexes is key to maintaining the size of the Cvt aggregate in vivo Using correlative light and electron microscopy, we further visualize key stages of Cvt vesicle biogenesis. Our findings suggest that Atg19 interaction limits Ape1 aggregate size while serving as a vehicle for vacuolar delivery of tetrameric Ams1.
Date Issued
2016-06-06
Date Acceptance
2016-05-02
Citation
EMBO Reports, 2016, 17, pp.1044-1060
ISSN
1469-221X
Publisher
EMBO Press
Start Page
1044
End Page
1060
Journal / Book Title
EMBO Reports
Volume
17
Copyright Statement
© 2016 The Authors. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs 4.0 License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
Identifier
PII: embr.201541960
Subjects
X‐ray crystallography
Autophagy cargo
Autophagy receptor
Correlative light and electron microscopy
Electron cryomicroscopy
Fluorescence light microscopy
Selective autophagy
Developmental Biology
Biochemistry And Cell Biology
Publication Status
Published