Interaction of GAPR-1 with lipid bilayers is regulated by alternative homodimerization

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2012-09

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van Galen, Josse
Olrichs, Nick KISNI 0000000392074244
Schouten, ArieISNI 0000000396782264
Serrano, R.L.
Nolte-'t Hoen, Esther N M
Eerland, R.ISNI 0000000506363766
Kaloyanova, DoraISNI 000000039254906X
Gros, PietISNI 0000000395560467
Helms, J. BerndISNI 0000000390424642

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Abstract

Golgi-Associated Plant Pathogenesis-Related protein 1 (GAPR-1) is a mammalian protein that belongs to the superfamily of plant pathogenesis related proteins group 1 (PR-1). GAPR-1 is a peripheral membrane-binding protein that strongly associates with lipid-enriched microdomains at the cytosolic leaflet of Golgi membranes. Little is known about the mechanism of GAPR-1 interaction with membranes. We previously suggested that dimerization plays a role in the function of GAPR-1 and here we report that phytic acid (inositol hexakisphosphate) induces dimerization of GAPR-1 in solution. Elucidation of the crystal structure of GAPR-1 in the presence of phytic acid revealed that the GAPR-1 dimer differs from the previously published GAPR-1 dimer structure. In this structure, one of the monomeric subunits of the crystallographic dimer is rotated by 28.5°. To study the GAPR-1 dimerization properties, we investigated the interaction with liposomes in a light scattering assay and by flow cytometry. In the presence of negatively charged lipids, GAPR-1 caused a rapid and stable tethering of liposomes. [D81K]GAPR-1, a mutant predicted to stabilize the IP6-induced dimer conformation, also caused tethering of liposomes. [A68K]GAPR-1 however, a mutant predicted to stabilize the non-rotated dimer conformation, is capable of binding to liposomes but did not cause liposome tethering. Our combined data suggest that the charge properties of the lipid bilayer can regulate GAPR-1 dynamics as a potential mechanism to modulate GAPR-1 function.

Keywords

Cell Membrane, Chromatography, Gel, Crystallography, X-Ray, Dimerization, Flow Cytometry, Golgi Apparatus, Humans, Lipid Bilayers, Lipids, Liposomes, Membrane Proteins, Models, Biological, Models, Molecular, Molecular Conformation, Mutation, Phosphatidylinositols, Phytic Acid, Plasmids, Protein Conformation, Ordered by external client

Citation

van Galen, J, Olrichs, N K, Schouten, A, Serrano, R L, Nolte-'t Hoen, E N M, Eerland, R, Kaloyanova, D, Gros, P & Helms, J B 2012, 'Interaction of GAPR-1 with lipid bilayers is regulated by alternative homodimerization', Biochimica et Biophysica Acta, vol. 1818, no. 9, pp. 2175-2183. https://doi.org/10.1016/j.bbamem.2012.04.016