| Literature DB >> 28550152 |
Anna Chiara Nascimbeni1,2, Francesca Giordano3,4, Nicolas Dupont1,2, Daniel Grasso5, Maria I Vaccaro5, Patrice Codogno1,2, Etienne Morel6,2.
Abstract
The double-membrane-bound autophagosome is formed by the closure of a structure called the phagophore, origin of which is still unclear. The endoplasmic reticulum (ER) is clearly implicated in autophagosome biogenesis due to the presence of the omegasome subdomain positive for DFCP1, a phosphatidyl-inositol-3-phosphate (PI3P) binding protein. Contribution of other membrane sources, like the plasma membrane (PM), is still difficult to integrate in a global picture. Here we show that ER-plasma membrane contact sites are mobilized for autophagosome biogenesis, by direct implication of the tethering extended synaptotagmins (E-Syts) proteins. Imaging data revealed that early autophagic markers are recruited to E-Syt-containing domains during autophagy and that inhibition of E-Syts expression leads to a reduction in autophagosome biogenesis. Furthermore, we demonstrate that E-Syts are essential for autophagy-associated PI3P synthesis at the cortical ER membrane via the recruitment of VMP1, the stabilizing ER partner of the PI3KC3 complex. These results highlight the contribution of ER-plasma membrane tethers to autophagosome biogenesis regulation and support the importance of membrane contact sites in autophagy.Entities:
Keywords: PI3P; autophagosome; contact sites; extended synaptotagmins; organelle biogenesis
Mesh:
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Year: 2017 PMID: 28550152 PMCID: PMC5509996 DOI: 10.15252/embj.201797006
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598