Cooperative partition model of nystatin interaction with phospholipid vesicles.

PubWeight™: 1.02‹?› | Rank: Top 15%

🔗 View Article (PMC 1302868)

Published in Biophys J on May 01, 2003

Authors

Ana Coutinho1, Manuel Prieto

Author Affiliations

1: Centro de Química-Física Molecular, Instituto Superior Técnico, Av. Rovisco Pais, P-1049-001 Lisbon, Portugal.

Articles citing this

Comparative molecular dynamics study of lipid membranes containing cholesterol and ergosterol. Biophys J (2006) 1.07

Cholesterol and ergosterol influence nystatin surface aggregation: relation to pore formation. Biophys J (2004) 1.03

Amphotericin B channels in the bacterial membrane: role of sterol and temperature. Biophys J (2003) 0.96

Effect of fengycin, a lipopeptide produced by Bacillus subtilis, on model biomembranes. Biophys J (2008) 0.90

Differential detection of phospholipid fluidity, order, and spacing by fluorescence spectroscopy of bis-pyrene, prodan, nystatin, and merocyanine 540. Biophys J (2006) 0.90

Evidence that nystatin channels form at the boundaries, not the interiors of lipid domains. Biophys J (2006) 0.85

Pinched multilamellar structure of aggregates of lysozyme and phosphatidylserine-containing membranes revealed by FRET. Biophys J (2008) 0.85

Mechanism of membrane activity of the antibiotic trichogin GA IV: a two-state transition controlled by peptide concentration. Biophys J (2005) 0.83

Competitive binding of cholesterol and ergosterol to the polyene antibiotic nystatin. A fluorescence study. Biophys J (2006) 0.82

Interaction of antiinflammatory drugs with EPC liposomes: calorimetric study in a broad concentration range. Biophys J (2004) 0.81

Lateral distribution of NBD-PC fluorescent lipid analogs in membranes probed by molecular dynamics-assisted analysis of Förster Resonance Energy Transfer (FRET) and fluorescence quenching. Int J Mol Sci (2012) 0.80

Evaluation of nystatin isolated from Streptomyces griseus SDX-4 against the ciliate, Ichthyophthirius multifiliis. Parasitol Res (2015) 0.78

Polymeric films as a promising carrier for bioadhesive drug delivery: Development, characterization and optimization. Saudi Pharm J (2015) 0.75

Exploring in vivo cholesterol-mediated interactions between activated EGF receptors in plasma membrane with single-molecule optical tracking. BMC Biophys (2016) 0.75

Osmotic Effects Induced by Pore-Forming Agent Nystatin: From Lipid Vesicles to the Cell. PLoS One (2016) 0.75

Drunken Membranes: Short-Chain Alcohols Alter Fusion of Liposomes to Planar Lipid Bilayers. Biophys J (2017) 0.75

Articles cited by this

Vesicles of variable sizes produced by a rapid extrusion procedure. Biochim Biophys Acta (1986) 7.07

Structure of fully hydrated bilayer dispersions. Biochim Biophys Acta (1988) 5.52

The water and nonelectrolyte permeability induced in thin lipid membranes by the polyene antibiotics nystatin and amphotericin B. J Gen Physiol (1970) 4.28

How do the polyene macrolide antibiotics affect the cellular membrane properties? Biochim Biophys Acta (1986) 4.22

The ion permeability induced in thin lipid membranes by the polyene antibiotics nystatin and amphotericin B. J Gen Physiol (1970) 3.03

An accurate and convenient organic phosphorus assay. Anal Biochem (1971) 2.96

Polyene antibiotic-sterol interactions in membranes of Acholeplasma laidlawii cells and lecithin liposomes. 3. Molecular structure of the polyene antibiotic-cholesterol complexes. Biochim Biophys Acta (1974) 2.79

The effect of amphotericin B on the water and nonelectrolyte permeability of thin lipid membranes. J Gen Physiol (1969) 2.33

A calorimetric and fluorescent probe study of the gel-liquid crystalline phase transition in small, single-lamellar dipalmitoylphosphatidylcholine vesicles. Biochemistry (1976) 2.21

Protein folding in membranes: determining energetics of peptide-bilayer interactions. Methods Enzymol (1998) 2.10

Nystatin perforated patch recording and its applications to analyses of intracellular mechanisms. Jpn J Physiol (1994) 1.87

Folding of beta-sheet membrane proteins: a hydrophobic hexapeptide model. J Mol Biol (1998) 1.82

Polyene antibiotic action on lecithin liposomes: effect of cholesterol and fatty acyl chains. Biochem Biophys Res Commun (1973) 1.69

Pores formed in lipid bilayer membranes by nystatin, Differences in its one-sided and two-sided action. J Gen Physiol (1975) 1.52

Differences in the interaction of the polyene antibiotic amphotericin B with cholesterol- or ergosterol-containing phospholipid vesicles. A circular dichroism and permeability study. Biochemistry (1983) 1.48

Amphotericin B: new life for an old drug. Trends Pharmacol Sci (1996) 1.45

Single-length and double-length channels formed by nystatin in lipid bilayer membranes. J Membr Biol (1984) 1.38

An electron-electron double-resonance study of interactions between [14N]- and [15N]stearic acid spin-label pairs: lateral diffusion and vertical fluctuations in dimyristoylphosphatidylcholine. Biochemistry (1984) 1.36

The structure and function of amphotericin B-cholesterol pores in lipid bilayer membranes. Ann N Y Acad Sci (1974) 1.29

The intrinsic structural asymmetry of highly curved phospholipid bilayer membranes. Biochim Biophys Acta (1977) 1.25

The formation of amphotericin B ion channels in lipid bilayers. Biochemistry (1997) 1.19

Groups with polar characteristics can locate at both shallow and deep locations in membranes: the behavior of dansyl and related probes. Biochemistry (1998) 1.19

Localizing the nitroxide group of fatty acid and voltage-sensitive spin-labels in phospholipid bilayers. Biochim Biophys Acta (1988) 1.18

Interaction between phospholipid bilayer membranes and the polyene antibiotic amphotericin B: lipid state and cholesterol content dependence. Biochim Biophys Acta (1980) 1.14

Distribution analysis of depth-dependent fluorescence quenching in membranes: a practical guide. Methods Enzymol (1997) 1.08

Effect of amphotericin B on cholesterol-containing liposomes of egg phosphatidylcholine and didocosenoyl phosphatidylcholine. A refinement of the model for the formation of pores by amphotericin B in membranes. Biochim Biophys Acta (1978) 1.07

Vertical fluctuations of phospholipid acyl chains in bilayers. FEBS Lett (1987) 1.06

Dissociation kinetics and equilibrium binding properties of polyene antibiotic complexes with phosphatidylcholine/sterol vesicles. Biochemistry (1984) 1.02

Minimal size phosphatidylcholine vesicles: effects of radius of curvature on head group packing and conformation. Biochemistry (1982) 1.01

Interaction of the polyene antibiotic amphotericin B with model membranes: differences between small and large unilamellar vesicles. Biochimie (1989) 1.01

Interaction of amphotericin B with membrane lipids as viewed by 2H-NMR. Biochim Biophys Acta (1984) 0.98

Enhancement of amphotericin B selectivity by antibiotic incorporation into gel state vesicles. A circular dichroism and permeability study. Biochem Biophys Res Commun (1984) 0.95

Association of the polyene antibiotic amphotericin B with phospholipid vesicles: perturbation by temperature changes. Can J Biochem (1982) 0.94

Filipin fluorescence quenching by spin-labeled probes: studies in aqueous solution and in a membrane model system. Biophys J (1995) 0.93

The structuring effects of amphotericin B on pure and ergosterol- or cholesterol-containing dipalmitoylphosphatidylcholine bilayers: a differential scanning calorimetry study. Biochim Biophys Acta (1998) 0.93

Phase transitions in phospholipid model membranes of different curvature. Biochim Biophys Acta (1978) 0.90

Influence of net charge on the aggregation and solubility behaviour of amphotericin B and its derivatives in aqueous media. Eur Biophys J (1990) 0.90

Fluorescence study of the macrolide pentaene antibiotic filipin in aqueous solution and in a model system of membranes. Eur J Biochem (1992) 0.89

Self-association of the polyene antibiotic nystatin in dipalmitoylphosphatidylcholine vesicles: a time-resolved fluorescence study. Biophys J (1995) 0.88

Interaction of 14C-labelled amphotericin B derivatives with human erythrocytes: relationship between binding and induced K+ leak. Biochim Biophys Acta (1988) 0.87

Phase behaviour of amphotericin B multilamellar vesicles. Biochim Biophys Acta (1991) 0.84

Amphotericin B-sterol complex formation and competition with egg phosphatidylcholine: a monolayer study. Biochim Biophys Acta (1988) 0.81

Lipid-amphotericin B complex structure in solution: a possible first step in the aggregation process in cell membranes. Biochemistry (1993) 0.80

The interaction of the polyene antibiotic lucensomycin with cholesterol in erythrocyte membranes and in model systems. III. Characterization of spectral parameters. Biophys J (1976) 0.79

Effect of surface curvature on the interaction of single lamellar phospholipid vesicles with aromatic and nonaromatic heptaene antibiotics (vacidin A and amphotericin B). Biochem Pharmacol (1984) 0.78

Physical biochemistry of a liposomal amphotericin B mixture used for patient treatment. Biochim Biophys Acta (1989) 0.77

Association of polyene antibiotics with sterol-free lipid membranes. II. Hydrophobic binding of nystatin to dilauroylphosphatidylcholine bilayers. Biochim Biophys Acta (1997) 0.77

Temperature dependence of the size of phospholipid vesicles. Biochim Biophys Acta (1981) 0.77

Articles by these authors

Sphingomyelin/phosphatidylcholine/cholesterol phase diagram: boundaries and composition of lipid rafts. Biophys J (2003) 4.48

Lipid rafts have different sizes depending on membrane composition: a time-resolved fluorescence resonance energy transfer study. J Mol Biol (2005) 2.17

A critical role for ceramide synthase 2 in liver homeostasis: I. alterations in lipid metabolic pathways. J Biol Chem (2010) 1.56

Quantifying molecular partition into model systems of biomembranes: an emphasis on optical spectroscopic methods. Biochim Biophys Acta (2003) 1.32

Ceramide-domain formation and collapse in lipid rafts: membrane reorganization by an apoptotic lipid. Biophys J (2006) 1.32

Role of helix 0 of the N-BAR domain in membrane curvature generation. Biophys J (2008) 1.31

Phase diagrams of lipid mixtures relevant to the study of membrane rafts. Biochim Biophys Acta (2008) 1.29

Ceramide-platform formation and -induced biophysical changes in a fluid phospholipid membrane. Mol Membr Biol (2006) 1.23

Nonequilibrium phenomena in the phase separation of a two-component lipid bilayer. Biophys J (2002) 1.22

Membrane lipid domains and rafts: current applications of fluorescence lifetime spectroscopy and imaging. Chem Phys Lipids (2008) 1.18

Formation of ceramide/sphingomyelin gel domains in the presence of an unsaturated phospholipid: a quantitative multiprobe approach. Biophys J (2007) 1.16

Complexity of lipid domains and rafts in giant unilamellar vesicles revealed by combining imaging and microscopic and macroscopic time-resolved fluorescence. Biophys J (2007) 1.15

Dependence of M13 major coat protein oligomerization and lateral segregation on bilayer composition. Biophys J (2003) 1.14

Membrane domain formation, interdigitation, and morphological alterations induced by the very long chain asymmetric C24:1 ceramide. Biophys J (2008) 1.07

Cholesterol-rich fluid membranes solubilize ceramide domains: implications for the structure and dynamics of mammalian intracellular and plasma membranes. J Biol Chem (2009) 1.06

Lipid raft composition modulates sphingomyelinase activity and ceramide-induced membrane physical alterations. Biophys J (2009) 1.04

Cholesterol and ergosterol influence nystatin surface aggregation: relation to pore formation. Biophys J (2004) 1.03

Lateral distribution of the transmembrane domain of influenza virus hemagglutinin revealed by time-resolved fluorescence imaging. J Biol Chem (2009) 1.00

Effect of ceramide structure on membrane biophysical properties: the role of acyl chain length and unsaturation. Biochim Biophys Acta (2011) 0.99

Ablation of ceramide synthase 2 strongly affects biophysical properties of membranes. J Lipid Res (2012) 0.97

Quantification of Protein-Lipid Selectivity using FRET: Application to the M13 Major Coat Protein. Biophys J (2004) 0.97

Methylation of glycosylated sphingolipid modulates membrane lipid topography and pathogenicity of Cryptococcus neoformans. Cell Microbiol (2012) 0.96

Absence of clustering of phosphatidylinositol-(4,5)-bisphosphate in fluid phosphatidylcholine. J Lipid Res (2006) 0.93

Structure and dynamics of the gammaM4 transmembrane domain of the acetylcholine receptor in lipid bilayers: insights into receptor assembly and function. Mol Membr Biol (2006) 0.90

The effect of variable liposome brightness on quantifying lipid-protein interactions using fluorescence correlation spectroscopy. Biochim Biophys Acta (2011) 0.89

Cholesterol modulates the organization of the gammaM4 transmembrane domain of the muscle nicotinic acetylcholine receptor. Biophys J (2004) 0.88

FRET in Membrane Biophysics: An Overview. Front Physiol (2011) 0.87

Is there a preferential interaction between cholesterol and tryptophan residues in membrane proteins? Biochemistry (2008) 0.86

Energetics and partition of two cecropin-melittin hybrid peptides to model membranes of different composition. Biophys J (2007) 0.86

Pinched multilamellar structure of aggregates of lysozyme and phosphatidylserine-containing membranes revealed by FRET. Biophys J (2008) 0.85

Removal of cadmium from wastewaters by aragonite shells and the influence of other divalent cations. Environ Sci Technol (2007) 0.84

Membrane microheterogeneity: Förster resonance energy transfer characterization of lateral membrane domains. Eur Biophys J (2009) 0.83

Structural effects of a basic peptide on the organization of dipalmitoylphosphatidylcholine/dipalmitoylphosphatidylserine membranes: a fluorescent resonance energy transfer study. J Phys Chem B (2006) 0.83

FRET analysis of domain formation and properties in complex membrane systems. Biochim Biophys Acta (2008) 0.82

Organization and dynamics of Fas transmembrane domain in raft membranes and modulation by ceramide. Biophys J (2011) 0.82

Competitive binding of cholesterol and ergosterol to the polyene antibiotic nystatin. A fluorescence study. Biophys J (2006) 0.82

Structural and dynamic characterization of the interaction of the putative fusion peptide of the S2 SARS-CoV virus protein with lipid membranes. J Phys Chem B (2008) 0.81

The photophysics of a Rhodamine head labeled phospholipid in the identification and characterization of membrane lipid phases. Chem Phys Lipids (2012) 0.81

Effect of glucosylceramide on the biophysical properties of fluid membranes. Biochim Biophys Acta (2012) 0.81

Characterization of DNA/lipid complexes by fluorescence resonance energy transfer. Biophys J (2003) 0.81

Intrinsic tyrosine fluorescence as a tool to study the interaction of the shaker B "ball" peptide with anionic membranes. Biochemistry (2003) 0.81

Interaction of peptides with binary phospholipid membranes: application of fluorescence methodologies. Chem Phys Lipids (2003) 0.81

Effect of sol-gel confinement on the structural dynamics of the enzyme bovine Cu,Zn superoxide dismutase. J Phys Chem B (2008) 0.80

Effect of ionic strength and presence of serum on lipoplexes structure monitorized by FRET. BMC Biotechnol (2008) 0.80

Interaction of a peptide derived from the N-heptad repeat region of gp41 Env ectodomain with model membranes. Modulation of phospholipid phase behavior. Biochemistry (2005) 0.80

Influence of intracellular membrane pH on sphingolipid organization and membrane biophysical properties. Langmuir (2014) 0.80

Cytotoxic bile acids, but not cytoprotective species, inhibit the ordering effect of cholesterol in model membranes at physiologically active concentrations. Biochim Biophys Acta (2013) 0.80

Changes in membrane biophysical properties induced by sphingomyelinase depend on the sphingolipid N-acyl chain. J Lipid Res (2013) 0.80

FRET studies of lipid-protein aggregates related to amyloid-like fibers. J Neurochem (2011) 0.79

Nystatin-induced lipid vesicles permeabilization is strongly dependent on sterol structure. Biochim Biophys Acta (2006) 0.79

A combined fluorescence spectroscopy, confocal and 2-photon microscopy approach to re-evaluate the properties of sphingolipid domains. Biochim Biophys Acta (2013) 0.79

Fluorescence resonance energy transfer to characterize cholesterol-induced domains. Methods Mol Biol (2007) 0.78

Ciprofloxacin interactions with bacterial protein OmpF: modelling of FRET from a multi-tryptophan protein trimer. Biochim Biophys Acta (2007) 0.78

Quantification of protein-lipid selectivity using FRET. Eur Biophys J (2010) 0.78

Interaction of S413-PV cell penetrating peptide with model membranes: relevance to peptide translocation across biological membranes. J Pept Sci (2007) 0.78

Quantifying lipid-protein interaction by fluorescence correlation spectroscopy (FCS). Methods Mol Biol (2014) 0.78

Fluorescence detection of lipid-induced oligomeric intermediates involved in lysozyme "amyloid-like" fiber formation driven by anionic membranes. J Phys Chem B (2013) 0.77

Liposome complexation efficiency monitored by FRET: effect of charge ratio, helper lipid and plasmid size. Eur Biophys J (2007) 0.77

Cellular uptake of S413-PV peptide occurs upon conformational changes induced by peptide-membrane interactions. Biochim Biophys Acta (2006) 0.77

Modeling FRET to investigate the selectivity of lactose permease of Escherichia coli for lipids. Mol Membr Biol (2014) 0.77

Exploring homo-FRET to quantify the oligomer stoichiometry of membrane-bound proteins involved in a cooperative partition equilibrium. Phys Chem Chem Phys (2014) 0.77

Phospholipid-lactose permease interaction as reported by a head-labeled pyrene phosphatidylethanolamine: a FRET study. J Phys Chem B (2013) 0.77

Consensus opinion for the selection and use of therapeutic products for the treatment of haemophilia in Spain. Blood Coagul Fibrinolysis (2008) 0.77

Characterization of peptide-induced morphological alterations in membranes by fluorescence resonance energy transfer. Protein Pept Lett (2009) 0.76

Solution conformation of a nitrobenzoxadiazole derivative of the polyene antibiotic nystatin: a FRET study. J Photochem Photobiol B (2003) 0.76

Topology and lipid selectivity of pulmonary surfactant protein SP-B in membranes: Answers from fluorescence. Biochim Biophys Acta (2012) 0.76

Membrane protein-lipid selectivity: enhancing sensitivity for modeling FRET data. J Phys Chem B (2012) 0.76

Interaction of a peptide corresponding to the loop domain of the S2 SARS-CoV virus protein with model membranes. Mol Membr Biol (2009) 0.76

Lactose permease lipid selectivity using Förster resonance energy transfer. Biochim Biophys Acta (2010) 0.76

Edelfosine and miltefosine effects on lipid raft properties: membrane biophysics in cell death by antitumor lipids. J Phys Chem B (2013) 0.75

Dynamics of tryptophan in the histidine-containing phosphocarrier protein of Streptomyces coelicolor: evidence of multistate equilibrium unfolding. Biochemistry (2007) 0.75

Fluorescence methods for lipoplex characterization. Biochim Biophys Acta (2011) 0.75

Conformation and self-assembly of a nystatin nitrobenzoxadiazole derivative in lipid membranes. Biochim Biophys Acta (2003) 0.75

Nucleation of solid solutions crystallizing from aqueous solutions. Philos Trans A Math Phys Eng Sci (2003) 0.75

Photophysical behavior of a dimeric cyanine dye (BOBO-1) within cationic liposomes. Photochem Photobiol (2006) 0.75

Membrane-bound peptides from V-ATPase subunit a do not interact with an indole-type inhibitor. J Pept Sci (2008) 0.75

Application of a molecular diagnostic algorithm for haemophilia A and B using next-generation sequencing of entire F8, F9 and VWF genes. Thromb Haemost (2016) 0.75

Förster resonance energy transfer as a tool for quantification of protein-lipid selectivity. Methods Mol Biol (2013) 0.75

Electrostatically driven lipid-lysozyme mixed fibers display a multilamellar structure without amyloid features. Soft Matter (2014) 0.75

Advanced FRET methodologies: protein-lipid selectivity detection and quantification. Adv Exp Med Biol (2012) 0.75