Javascript must be enabled to continue!
Parallel phospholipid transfer by Vps13 and Atg2 determines autophagosome biogenesis dynamics
View through CrossRef
Abstract
During autophagy, rapid membrane assembly expands small phagophores into large double-membrane autophagosomes. Theoretical modelling predicts the majority of autophagosomal phospholipids is derived from highly efficient non-vesicular phospholipid transfer (PLT) across phagophore-ER contacts (PERCS). Currently, the phagophore-ER tether Atg2 is the only PLT protein known to drive phagophore expansion
in vivo
. Here, our quantitative live-cell-imaging analysis reveals poor correlation between duration and size of forming autophagosomes and number of Atg2 molecules at PERCS of starving yeast cells. Strikingly, we find Atg2-mediated PLT is non-rate-limiting for autophagosome biogenesis, because membrane tether and PLT protein Vps13 localizes to the rim and promotes expansion of phagophores in parallel with Atg2. In the absence of Vps13, the number of Atg2 molecules at PERCS determines duration and size of forming autophagosomes with an apparent
in vivo
transfer rate of ~200 phospholipids per Atg2 molecule and second. We propose conserved PLT proteins cooperate in channeling phospholipids across organelle contact sites for non-rate-limiting membrane assembly during autophagosome biogenesis.
Title: Parallel phospholipid transfer by Vps13 and Atg2 determines autophagosome biogenesis dynamics
Description:
Abstract
During autophagy, rapid membrane assembly expands small phagophores into large double-membrane autophagosomes.
Theoretical modelling predicts the majority of autophagosomal phospholipids is derived from highly efficient non-vesicular phospholipid transfer (PLT) across phagophore-ER contacts (PERCS).
Currently, the phagophore-ER tether Atg2 is the only PLT protein known to drive phagophore expansion
in vivo
.
Here, our quantitative live-cell-imaging analysis reveals poor correlation between duration and size of forming autophagosomes and number of Atg2 molecules at PERCS of starving yeast cells.
Strikingly, we find Atg2-mediated PLT is non-rate-limiting for autophagosome biogenesis, because membrane tether and PLT protein Vps13 localizes to the rim and promotes expansion of phagophores in parallel with Atg2.
In the absence of Vps13, the number of Atg2 molecules at PERCS determines duration and size of forming autophagosomes with an apparent
in vivo
transfer rate of ~200 phospholipids per Atg2 molecule and second.
We propose conserved PLT proteins cooperate in channeling phospholipids across organelle contact sites for non-rate-limiting membrane assembly during autophagosome biogenesis.
Related Results
Vps13 is Required for Efficient Autophagy in
Saccharomyces cerevisiae
Vps13 is Required for Efficient Autophagy in
Saccharomyces cerevisiae
Vps13 is a large, conserved protein that transports lipids between membranes. Its localization at multiple organelle membranes and membrane contact sites suggests its important phy...
Insights into membrane dynamics in autophagy
Insights into membrane dynamics in autophagy
In autophagy, the unique double membrane‐bound autophagosomes transiently emerge in the cytoplasm, sequester portion of cytosol and organelles, and eventually fuse with lysosomes t...
Phospholipid transfer protein deficiency in mice impairs macrophage reverse cholesterol transport
in vivo
Phospholipid transfer protein deficiency in mice impairs macrophage reverse cholesterol transport
in vivo
Phospholipid transfer protein is expressed in various cell types and secreted into plasma, where it transfers phospholipids between lipoproteins and modulates the composition of hi...
Astroglia proliferate upon biogenesis of tunneling nanotubes and clearance of α-synuclein toxicities
Astroglia proliferate upon biogenesis of tunneling nanotubes and clearance of α-synuclein toxicities
Abstract
Astrocytic cells are a subtype of glial cells that engulf pathogenic aggregates derived from degenerative neurons to facilitate its degradation. Here, we s...
Abstract 1697: Pharmacological inhibition of ATM results in mitochondrial biogenesis in AMPK independent manner.
Abstract 1697: Pharmacological inhibition of ATM results in mitochondrial biogenesis in AMPK independent manner.
Abstract
The gene mutated in Ataxia telangiectasia termed Ataxia Telangiectasia Mutated (ATM) encodes for a Serine/Threonine protein kinase which functions at the co...
In situ architecture of the lipid transport protein VPS13C at ER-lysosomes membrane contacts
In situ architecture of the lipid transport protein VPS13C at ER-lysosomes membrane contacts
Abstract
VPS13 is a eukaryotic lipid transport protein localized at membrane contact sites. Previous studies suggested that it may transfer lipid...
Structural plasticity of Atg18 oligomers: organization of assembled tubes and scaffolds at the isolation membrane
Structural plasticity of Atg18 oligomers: organization of assembled tubes and scaffolds at the isolation membrane
Abstract
Autophagy-related protein 18 (Atg18) participates in the elongation of early autophagosomal structures in concert with Atg2 and Atg9 complexes. How Atg18 c...
Ultrastructural analysis of autophagosome organization using mammalian autophagy-deficient cells
Ultrastructural analysis of autophagosome organization using mammalian autophagy-deficient cells
Autophagy is mediated by a unique organelle, the autophagosome. Autophagosome formation involves a number of autophagy-related (ATG) proteins and complicated membrane dynamics. Alt...

