FYCO1 is a Rab7 effector that binds to LC3 and PI3P to mediate microtubule plus end–directed vesicle transport

Serhiy Pankiv(UiT The Arctic University of Norway), Endalkachew A. Alemu(UiT The Arctic University of Norway), Andreas Brech(Oslo University Hospital), Jack‐Ansgar Bruun(UiT The Arctic University of Norway), Trond Lamark(UiT The Arctic University of Norway), Aud Øvervatn(UiT The Arctic University of Norway), Geir Bjørkøy(TrønderEnergi (Norway)), Terje Johansen(UiT The Arctic University of Norway)
The Journal of Cell Biology
January 25, 2010
Cited by 640Open Access
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Abstract

Autophagy is the main eukaryotic degradation pathway for long-lived proteins, protein aggregates, and cytosolic organelles. Although the protein machinery involved in the biogenesis of autophagic vesicles is well described, very little is known about the mechanism of cytosolic transport of autophagosomes. In this study, we have identified an adaptor protein complex, formed by the two autophagic membrane-associated proteins LC3 and Rab7 and the novel FYVE and coiled-coil (CC) domain–containing protein FYCO1, that promotes microtubule (MT) plus end–directed transport of autophagic vesicles. We have characterized the LC3-, Rab7-, and phosphatidylinositol-3-phosphate–binding domains in FYCO1 and mapped part of the CC region essential for MT plus end–directed transport. We also propose a mechanism for selective autophagosomal membrane recruitment of FYCO1.


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