LC3 and GATE-16 N Termini Mediate Membrane Fusion Processes Required for Autophagosome Biogenesis

Autophagy is a unique membrane trafficking pathway describing the formation and targeting of double membrane autophagosomes to the vacuole/lysosome. The biogenesis of autophagosomes and their delivery to the vacuole/lysosome depend on multiple membrane fusion events. Using a cell-free system, we hav...

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Veröffentlicht in:Developmental cell 2011-04, Vol.20 (4), p.444-454
Hauptverfasser: Weidberg, Hilla, Shpilka, Tomer, Shvets, Elena, Abada, Adi, Shimron, Frida, Elazar, Zvulun
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Sprache:eng
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Zusammenfassung:Autophagy is a unique membrane trafficking pathway describing the formation and targeting of double membrane autophagosomes to the vacuole/lysosome. The biogenesis of autophagosomes and their delivery to the vacuole/lysosome depend on multiple membrane fusion events. Using a cell-free system, we have investigated the ability of LC3 and GATE-16, two mammalian Atg8 orthologs, to mediate membrane fusion. We found that both proteins promote tethering and membrane fusion, mediated by the proteins' N-terminal α helices. We further show that short, 10 amino acid long synthetic peptides derived from the N terminus of LC3 or GATE-16 are sufficient to promote membrane fusion. Our data indicate that the fusion activity of LC3 is mediated by positively charged amino acids, whereas the activity of GATE-16 is mediated by hydrophobic interactions. Finally, we demonstrate that LC3 and GATE-16 N termini in general and specific residues needed for the fusion activity are essential for the proteins role in autophagosome biogenesis. [Display omitted] ► LC3B and GATE-16 promote membrane tethering and fusion ► Fusion activity is mediated predominantly by the proteins' N-termini ► LC3B and GATE-16 mediate fusion by ionic or hydrophobic interactions, respectively ► The fusion activity of LC3B and GATE-16 is essential for autophagosome biogenesis
ISSN:1534-5807
1878-1551
DOI:10.1016/j.devcel.2011.02.006