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Structural basis of wedging the Golgi membrane by FAPP pleckstrin homology domains.


ABSTRACT: The mechanisms underlying Golgi targeting and vesiculation are unknown, although the responsible phosphatidylinositol 4-phosphate (PtdIns(4)P) ligand and four-phosphate-adaptor protein (FAPP) modules have been defined. The micelle-bound structure of the FAPP1 pleckstrin homology domain reveals how its prominent wedge independently tubulates Golgi membranes by leaflet penetration. Mutations compromising the exposed hydrophobicity of full-length FAPP2 abolish lipid monolayer binding and compression. The trafficking process begins with an electrostatic approach, phosphoinositide sampling and perpendicular penetration. Extensive protein contacts with PtdIns(4)P and neighbouring phospholipids reshape the bilayer and initiate tubulation through a conserved wedge with features shared by diverse protein modules.

SUBMITTER: Lenoir M 

PROVIDER: S-EPMC2854595 | biostudies-literature | 2010 Apr

REPOSITORIES: biostudies-literature

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Structural basis of wedging the Golgi membrane by FAPP pleckstrin homology domains.

Lenoir Marc M   Coskun Unal U   Grzybek Michal M   Cao Xinwang X   Buschhorn Sabine B SB   James Jonathan J   Simons Kai K   Overduin Michael M  

EMBO reports 20100319 4


The mechanisms underlying Golgi targeting and vesiculation are unknown, although the responsible phosphatidylinositol 4-phosphate (PtdIns(4)P) ligand and four-phosphate-adaptor protein (FAPP) modules have been defined. The micelle-bound structure of the FAPP1 pleckstrin homology domain reveals how its prominent wedge independently tubulates Golgi membranes by leaflet penetration. Mutations compromising the exposed hydrophobicity of full-length FAPP2 abolish lipid monolayer binding and compressio  ...[more]

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