Chemistry and Physics of Lipids 2011-01-01

Structural investigation on the adsorption of the MARCKS peptide on anionic lipid monolayers – effects beyond electrostatic

Undine Dietrich, Peter Krüger, Josef A. Käs, Undine Dietrich, Peter Krüger, Josef A. Käs

Index: Chem. Phys. Lipids 164(4) , 266-75, (2011)

Full Text: HTML

Abstract

Abstract The presence of charged lipids in the cell membrane constitutes the background for the interaction with numerous membrane proteins. As a result, the valence of the lipids plays an important role concerning their lateral organization in the membrane and therefore the very manner of this interaction. This present study examines this aspect, particularly regarding to the interaction of the anionic lipid DPPS with the highly basic charged effector domain of the MARCKS protein, examined in monolayer model systems. Film balance, fluorescence microscopy and X-ray reflection/diffraction measurements were used to study the behavior of DPPS in a mixture with DPPC for its dependance on the presence of MARCKS (151–175). In the mixed monolayer, both lipids are completely miscible therefore DPPS is incorporated in the ordered crystalline DPPC domains as well. The interaction of MARCKS peptide with the mixed monolayer leads to the formation of lipid/peptide clusters causing an elongation of the serine group of the DPPS up to 7 Å in direction to surface normal into the subphase. The large cationic charge of the peptide pulls out the serine group of the interface which simultaneously causes an elongation of the phosphodiester group of the lipid fraction too. The obtained results were used to compare the interaction of MARCKS peptide with the polyvalent PIP 2 in mixed monolayers. On this way we surprisingly find out, that the relative small charge difference of the anionic lipids causes a significant different interaction with MARCKS (151–175). The lateral arrangement of the anionic lipids depends on their charge values and determines the diffusion of the electrostatic binding clusters within the membrane.


Related Compounds

Related Articles:

The interactions between cholesterol and phospholipids located in the inner leaflet of human erythrocytes membrane (DPPE and DPPS) in binary and ternary films--the effect of sodium and calcium ions.

2011-01-01

[Colloids Surf. B Biointerfaces 82(1) , 209-16, (2011)]

Reorganization and caging of DPPC, DPPE, DPPG, and DPPS monolayers caused by dimethylsulfoxide observed using Brewster angle microscopy.

2010-12-21

[Langmuir 26(24) , 18902-8, (2010)]

X-ray scattering studies of model lipid membrane interacting with purothionin provide support for a previously proposed mechanism of membrane lysis.

2010-07-01

[Eur. Biophys. J. 39(8) , 1155-65, (2010)]

Hydrophobicity drives the cellular uptake of short cationic peptide ligands.

2011-06-01

[Eur. Biophys. J. 40(6) , 727-36, (2011)]

The role of lateral tension in calcium-induced DPPS vesicle rupture.

2012-08-14

[Langmuir 28(32) , 11874-80, (2012)]

More Articles...