Membrane Lipid Composition Influences the Hydration of Proton Half-Channels in FoF1-ATP Synthase

被引:2
作者
Ivontsin, Leonid A. [1 ]
Mashkovtseva, Elena V. [1 ]
Nartsissov, Yaroslav R. [1 ,2 ]
机构
[1] Inst Cytochem & Mol Pharmacol, 24-14 6th Radialnaya Str, Moscow 115404, Russia
[2] BiDiPharma GmbH, Biomed Res Grp, 5 Bultbek, D-22962 Siek, Germany
来源
LIFE-BASEL | 2023年 / 13卷 / 09期
关键词
membrane proteins; FoF1-ATP synthase; cardiolipin; proton transport; molecular dynamics; ATP SYNTHASE; CARDIOLIPIN; PROTEIN; ORGANIZATION; RESIDUES;
D O I
10.3390/life13091816
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The membrane lipid composition plays an important role in the regulation of membrane protein activity. To probe its influence on proton half-channels' structure in FoF1-ATP synthase, we performed molecular dynamics simulations with the bacterial protein complex (PDB ID: 6VWK) embedded in three types of membranes: a model POPC, a lipid bilayer containing 25% (in vivo), and 75% (bacterial stress) of cardiolipin (CL). The structure proved to be stable regardless of the lipid composition. The presence of CL increased the hydration of half-channels. The merging of two water cavities at the inlet half-channel entrance and a long continuous chain of water molecules directly to cAsp61 from the periplasm were observed. Minor conformational changes in half-channels with the addition of CL caused extremely rare direct transitions between aGlu219-aAsp119, aGlu219-aHis245, and aGln252-cAsp61. Deeper penetration of water molecules (W1-W3) also increased the proton transport continuity. Stable spatial positions of significant amino acid (AA) residue aAsn214 were found under all simulation conditions indicate a prevailing influence of AA-AA or AA-W interactions on the side-chain dynamics. These results allowed us to put forward a model of the proton movement in ATP synthases under conditions close to in vivo and to evaluate the importance of membrane composition in simulations.
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页数:15
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