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Functional consequences of lipid packing stress
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instance of
scholarly article
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title
Functional consequences of lipid packing stress
(English)
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author name string
Sergey M Bezrukov
series ordinal
1
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publication date
July 2000
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published in
Current Opinion in Colloid & Interface Science
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volume
5
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issue
3-4
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page(s)
237-243
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cites work
How accurately can we image inositol lipids in living cells?
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The versatility of inositol phosphates as cellular signals
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Lipid-assisted protein folding
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The structure of the liquid-crystalline phasis of lipid-water systems
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Intrinsic curvature hypothesis for biomembrane lipid composition: a role for nonbilayer lipids
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The lateral pressure profile in membranes: a physical mechanism of general anesthesia
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Sensing isothermal changes in the lateral pressure in model membranes using di-pyrenyl phosphatidylcholine
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Lipid composition and the lateral pressure profile in bilayers
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Membrane cholesterol content modulates activation of volume-regulated anion current in bovine endothelial cells
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Modulation of Folding and Assembly of the Membrane Protein Bacteriorhodopsin by Intermolecular Forces within the Lipid Bilayer†
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Lipid bilayer electrostatic energy, curvature stress, and assembly of gramicidin channels
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Effect of lipid characteristics on the structure of transmembrane proteins
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Energetics of inclusion-induced bilayer deformations
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Hydrophobic mismatch between proteins and lipids in membranes
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Correlation between the free energy of a channel-forming voltage-gated peptide and the spontaneous curvature of bilayer lipids
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Molecular theory of lipid-protein interaction and the Lalpha-HII transition
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Spring constants for channel-induced lipid bilayer deformations. Estimates using gramicidin channels
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Continuum solvent model calculations of alamethicin-membrane interactions: thermodynamic aspects
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Theoretical study of protein--lipid interactions in bilayer membranes
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Models of lipid-protein interactions in membranes
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Structural dimensions and their changes in a reentrant hexagonal-lamellar transition of phospholipids
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Bending, hydration and interstitial energies quantitatively account for the hexagonal-lamellar-hexagonal reentrant phase transition in dioleoylphosphatidylethanolamine
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Probability of alamethicin conductance states varies with nonlamellar tendency of bilayer phospholipids.
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Lysophospholipids modulate channel function by altering the mechanical properties of lipid bilayers
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Lipid packing stress and polypeptide aggregation: alamethicin channel probed by proton titration of lipid charge.
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Small concentrations of alamethicin induce a cubic phase in bulk phosphatidylethanolamine mixtures.
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Membrane protein folding
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Gramicidin channel kinetics under tension
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Transduction of membrane tension by the ion channel alamethicin
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Mechanosensitive channels of Escherichia coli: the MscL gene, protein, and activities
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Lipids in biological membrane fusion
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The modified stalk mechanism of lamellar/inverted phase transitions and its implications for membrane fusion
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Poly(ethylene glycol) (PEG)-mediated fusion between pure lipid bilayers: a mechanism in common with viral fusion and secretory vesicle release?
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Dynamics of fusion pores connecting membranes of different tensions
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10.1016/S1359-0294(00)00061-3
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