Lipid dynamics in nanoparticles formed by maleic acid-containing copolymers: EPR spectroscopy and molecular dynamics simulations

Autor(en): Colbasevici, Alexandr
Voskoboynikova, Natalia 
Orekhov, Philipp S.
Bozdaganyan, Marine E.
Karlova, Maria G.
Sokolova, Olga S.
Klare, Johann P.
Mulkidjanian, Armen Y.
Shaitan, V, Konstantin
Steinhoff, Heinz-Juergen 
Stichwörter: BILAYER NANODISCS; Biochemistry & Molecular Biology; Biophysics; COARSE-GRAINED MODEL; Coarse-grained molecular dynamics; DIBMA; FREE PURIFICATION; Liposome; MARTINI FORCE-FIELD; MEMBRANE-PROTEINS; Nitroxide spin label; ORGANIZATION; Phospholipid bilayer; RESONANCE; SMALP; SOLUBILIZATION; SPECTRA; SPIN-LABELED PHOSPHOLIPIDS
Erscheinungsdatum: 2020
Herausgeber: ELSEVIER
Journal: BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES
Volumen: 1862
Ausgabe: 5
Zusammenfassung: 
Amphiphilic maleic acid-containing copolymers account for a recent methodical breakthrough in the study of membrane proteins. Their application enables a detergent-free extraction of membrane proteins from lipid bilayers, yielding stable water-soluble, discoidal lipid bilayer particles with incorporated proteins, which are wrapped with copolymers. Although many studies confirm the potential of this approach for membrane protein research, the interactions between the maleic acid-containing copolymers and extracted lipids, as well as possible effects of the copolymers on lipid-embedded proteins deserve further scrutinization. Here, we combine electron paramagnetic resonance spectroscopy and coarse-grain molecular dynamics simulations to compare the distribution and dynamics of lipids in lipid particles of phospholipid bilayers encased either by an aliphatic diisobutylene/maleic acid copolymer (DIBMALPs) or by an aromatic styrene/maleic acid copolymer (SMALPs). Nitroxides located at the 5th, 12th or 16th carbon atom positions in phosphatidylcholine-based spin labels experience restrictions of their reorientational motion depending on the type of encasing copolymer. The dynamics of the lipids was less constrained in DIBMALPs than in SMALPs with the affinity of spin labeled lipids to the polymeric rim being more pronounced in SMALPs.
ISSN: 00052736
DOI: 10.1016/j.bbamem.2020.183207

Zur Langanzeige

Seitenaufrufe

3
Letzte Woche
0
Letzter Monat
0
geprüft am 17.05.2024

Google ScholarTM

Prüfen

Altmetric