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1.
The fluorescent probe 8-anilino-1-naphthalene sulphonic acid (ANS) has been used to demonstrate the accessibility of the heme of cytochrome c — mixed mitochondrial phospholipid complexes to the solvent. Contrary to earlier reports fluorescence techniques using ANS do not detect redox induced conformational changes of these complexes.  相似文献   

2.
The effect of ionic strength on the fluidity of rabbit intestinal brush-border membranes has been studied using two fluorescence probes, pyrene and 1-anilino-8-naphthalene sulfonate (ANS). The imposition of a potential gradient on the pyrene-probed membrane vesicles (out > in) with increasing NaCl concentration in the medium resulted in a marked enhancement of the excimer formation efficiency, accompanied by a decrease in the ratio of fluorescence intensities of the probe at 392 and 375 nm. Fluorescence polarization of the pyrene-membrane complex is independent of temperature in the absence of salts, while it is dependent on temperature from 10 to 47°C in the presence of salts, as shown by the thermal Perrin plots of polarization. It has been demonstrated that there is a linear relationship between the changes in the pyrene excimer formation efficiency in the membranes and of the values of the binding parameters of ANS for the membranes. From these results, it is suggested that the lipid phase of the membranes becomes more fluid by shielding negatively charged groups of the membrane surface and that there is a fairly close correlation between the membrane organization and the membrane surface charge density.  相似文献   

3.
The intracellular distribution of several hydrophobic fluorescent probes (1,6-diphenyl-1,3,5-hexatriene (DPH), perylene, and 2-p-toluidinyl-6-naphthalene sulfonate (TNS)) in mouse lymphocytes and a fibroblast cell line was examined using radiolabeled fluorescent probes and the technique of high resolution EM autoradiography. Following a short term incubation, DPH and perylene were found largely internalized in cells, while TNS was localized predominantly at the cell surface. These findings suggest that fluorescence polarization studies using such probes with intact cells do not necessarily monitor only the cell surface membrane and must be interpreted with caution.  相似文献   

4.
Fluidity of the plasma membrane of Trypanosoma brucei brucei has been examined with fluorescence and electron spin resonance spectroscopy. Fluorescent probes 1,6-diphenyl-1,3,5-hexatriene and 8-anilino-1-naphthalene sulfonate and the spin label probe 5-doxyl stearate have been employed to examine fluidity under a variety of conditions. The temperature dependence of 8-anilino-1-naphthalene sulfonate polarization and of the order parameter S for 5-doxyl stearate reveals phase alterations near 30 C. 1,6-Diphenyl-1,3,5-hexatriene polarization shows that proteolysis of the surface glycoprotein with trypsin increases fluidity but treatment with human serum which is trypanocidal produces no detectable change in membrane fluidity.  相似文献   

5.
The formation of micelles of the local anesthetic tetracaine hydrochloride in aqueous phosphate buffer solution of pH 6.5 and ionic strength (I) 0.10 was examined at 22°C by surface tension and using the fluorescent indicators perylene (peri-dinaphthalene) and 8-anilino-1-naphthalene sulfonic acid, sodium salt (ANS). The critical micelle concentration was located at 0.069, 0.071 and 0.063 M by measurements of surface tension, perylene solubilization and enhancement of ANS fluorescence, respectively. In contrast to other cationic surfactants, the anesthetic monomer did not show evidence of forming a fluorescent molecular complex with ANS under the experimental conditions of this study.The formation of micelles by tetracaine-HCl showed a pronounced effect on lipid membranes by inducing an abrupt decrease in the scattered light of egg lecithin liposomes at an anesthetic concentration roughly similar to its critical micelle concentration. This optical behaviour is characteristic of liposome damage and can be interpreted to mean that the lipids become solubilized into tetracaine-HCl micelles.The ability of this local anesthetic to form micelles can be taken as a manifestation of the same hydrophobic forces that lead to partitioning of the drug into membranes.  相似文献   

6.
The in vivo effect of Concanavalin A (Con A), or bacterial lipopolysaccharide (LPS) on mouse spleen cell populations was investigated. The membrane fluorescence changes of activated splenic lymphocytes were studied during two weeks after the injection of polyclonal immunogens. Experiments were performed with the hydrophobic fluorescent probe: 1-anilino-8-naphthalene sulphonate (ANS). The kinetic studies further indicated that the course of fluorescence changes may considerably vary depending on both immunogens. These fluorescence intensity changes would be in direct relation to the electrokinetic surface potential changes of activated lymphocytes, as assessed by the electrophoretic mobility analysis. By comparison with the inverse relationship observed in our previous study, it would be concluded that the relation (direct or inverse) between ANS fluorescence and electrokinetic potential depends on the net electrical charge of the antigens used.  相似文献   

7.
Very low density and high density lipoproteins have been isolated from human plasma and their interaction with 1-anilin0-8-naphthalene sulfonate has been studied under different conditions of pH and added salt. Intrinsic fluorescence of bound 1-anilino-8-naphthalene sulfonate was higher for high density lipoproteins then for very low density lipoproteins, but was unaffected by salt in both systems. Binding of 1-anilino-8-naphthalene sulfonate by both these lipoproteins was saturable and was higher in the presence of added NaCl or CaCl2, Ca2+ having a greater effect than Na+ in enhancing fluorescence. The binding data were analyzed by Scatchard plots; the number of binding sites and the affinity of 1-anilino-8-naphthalene sulfonate for the site increased with increasing salt concentration. Fluorescence pH curves were similar to those published for phospholipids. From these and previous observations it is suggested that the phospholipids probably represent the major binding sites for 1-anilino-8-naphthalene sulfonate.  相似文献   

8.
The binding of the fluorescent probes 1-anilino-8-naphthalene sulfonate and dansyl cadaverine to the sodium salts of cholic, deoxycholic and dehydrocholic acids has been investigated. Enhanced probe solubilisation accompanies aggregation. Monitoring of fluorescence intensities as a function of bile salt concentration permits the detection of primary micelle formation, as well as secondary association. The transition concentrations obtained by fluorescence are in good agreement with values determined for the critical micelle concentrations, by other methods. Differences in the behaviour of cholate and deoxycholate have been noted. Fluorescence polarisation studies of 1,6-diphenyl-1,3,5-hexatriene solubilised in bile salt micelles suggest a higher microviscosity for the interior of the deoxycholate micelle as compared to cholate. 1H NMR studies of deoxycholate over the range 1–100 mg/ml suggest that micelle formation leads to a greater immobilisation of the C18 and C19 methyl groups as compared to the C21 methyl group. Well resolved 13C resonances are observed for all three steroids even at high concentration. Both fluorescence and NMR studies confirm that dehydrocholate does not aggregate.  相似文献   

9.
Time dependence of fluorescence enhancement of probes after addition to lipid vesicles has been used to investigate the position of chromophores in the lipid bilayer. Incorporation studies of a series of n-(9-anthroyloxy) fatty acids (n = 2, 2, 12 and 16) and 1,6-diphenylhexatriene in dipalmitoyl phosphatidylcholine vesicles are described. The activation energies for incorporation of these several lipid-mimic type fluorescent probes have been measured. Results show that the activation energy is a function of the distance of the anthracene moiety (chromophore) from the polar end of the probe and the length of the acyl portion of the probe. An average insertion energy of 0.6 kcal/carbon is seen for these fatty acid probes. The activation energy of 1,6-diphenylhexatriene, a factor of 2 greater than that of 16-(9-anthroyloxy)palmitic acid, is consistent with locating 1,6-diphenyl-hexatriene in the middle of the bilayer.  相似文献   

10.
We have measured the fluorescence decay of N-phenyl-1-naphthylamine using the phase-modulation method, in several solvent systems and egg phosphatidylcholine vesicles. The decay is monoexponential in pure solvents (both polar and non-polar) of low viscosity. In polar viscous solvents or in non-polar solvents containing an added polar solute, the decay is heterogeneous and emission wavelength dependent. In such cases, dielectric relaxation and/or excited-state complexing give rise to a shift of the emission spectrum on the nanosecond time scale. Emission-wavelength-dependent decay was also observed when N-phenyl-1-naphthylamine was bound to egg phosphatidylcholine vesicles. From these results as well as the position of the emission spectral maximum, we conclude that N-phenyl-1-naphthylamine probes the ester-carbonyl region of the phospholipid acyl chains, where it undergoes an excited-state reaction. This result contradicts the often made assumption that N-phenyl-1-naphthylamine probes the deeper hydrocarbon region of the bilayer.  相似文献   

11.
The properties of the membrane of intact, metabolically active, human persmatozoa have been studied by the use of 1-anilino-8-napthalene sulfonate (ANS). By fluorescence microscopy it was found that at neutral pH ANS is bound exclusively to the membrane of the entire sperm with some preferential binding to the midpiece, while at low pH some preferential binding to the aerosome was observed. By spectrofluorimetry, fluorescence was found to be enhanced 48-fold on binding of ANS to the spermatozoal membrane, with a 50-nm shift in the emission spectrum of the bound dye. 2.47 ± 0.02 nmoles of ANS were bound per 106 spermatozoa (K=2.3–10?5M). Scatchard plots indicate that all the binding sites on the spermatozoal membrane have similar binding characteristics with aZ value of 84.8. Energy transfer with an efficiency of 7% was found for recently ejaculated spermatozoa. The fluorescence of bound ANS depends on the pH of the medium and possibly on the metabolic state of the cell, since addition of succinate or fructose produces an enhancement of fluorescence, while addition of glucose results in a decrease of this parameter. These changes are inhibited by the presence of cyanide.  相似文献   

12.
Labelled shikimic acid was efficiently incorporated into the aniline moiety of N-(γ-L-glutamyl)-4-hydroxyaniline, a characteristic aromatic compound of the common mushroom, Agaricus bisporus. Incubations with [3-3H]- and [1,6-14C]shikimic acid clearly proved that the amination of shikimic acid occurs at its 4-position during the biosynthesis of N-(γ-L-glutamyl)-4-hydroxyaniline.  相似文献   

13.
The influence of 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT) and several other pesticides on the physical state of membrane phospholipids was investigated using model lipids. The thermal dependence of fluorescence intensity of the probe parinaric acid in dipalmitoylphosphatidylcholine liposomes and lipid vesicles of mixed composition were recorded. DDT was incorporated into the liposomal bilayer. The insecticide lowered the phase transition temperature and broadened the temperature range of the transition. The effects were concentration-dependent.The results may be interpreted as a sort of blurred and facilitated phase transition of bilayer lipids caused by intercalation of DDT between fatty acyl chains of membrane phospholipids.  相似文献   

14.
Migration of the fluorescent phospholipid N-(7-nitro-2,1,3-benzoxadiazol-4-yl)-l-α-dilauroylphosphatidyl-ethanolamine between small sonicated egg phosphatidylcholine vesicles was studied by use of the fluorescence resonance energy transfer method. Contrary to the results of lipid transfer experiments reported for acyl chain NBD-labeled phospholipids (Nichols, J.W. and Pagano, R.E. (1982) Biochemistry 21, 1720–1728), the migration kinetics of N-NBD-DLPE had to be described by a sum of two exponential functions. The fast component (t12 ≈ 38 min) was assigned to lipid transfer via soluble monomers and the slow component (t12 ≈ 400 min) to transbilayer motion. A reversible four-stage process is suggested as a kinetic model. Mathematical treatment of this scheme is given yielding an analytical expression for the time dependence of NBD emission intensity. The use of N-NBD-DLPE in the resonance energy transfer measurements offers the advantage of simple chemical synthesis of the fluorescent probe and leads to additional information on transbilayer motion which was not available with the NBD-labeled lipids used so far.  相似文献   

15.
Proteins for therapeutic use may contain small amounts of partially misfolded monomeric precursors to postproduction aggregation. To detect these misfolded proteins in the presence of an excess of properly folded protein, fluorescent probes such as 8-anilino-1-naphthalene sulfonate (ANS) are commonly used. We investigated the possibility of using isothermal titration calorimetry (ITC) to improve the detection of this type of conformational change using hydrophobic probes. As a case study, conformational changes in human polyclonal immunoglobulin G (IgG) were monitored by measuring the enthalpies of binding of ANS using ITC. Results were compared with those using fluorescence spectroscopy. IgG heated at 63 °C was used as a model system for “damaged” IgG. Heat-treated IgG can be detected already at levels below 5% with both ITC and fluorescence. However, ITC allows a much wider molar probe-to-protein ratio to be sampled. In particular, using reverse titration experiments (allowing high probe-to-protein ratios not available to fluorescence spectroscopy), an increase in the number of binding sites with a Kd > 10 mM was observed for heat-treated IgG, reflecting subtle changes in structure. Both ITC and fluorescence spectroscopy showed low background signals for native IgG. The nature of the background signals was not clear from the fluorescence measurements. However, further analysis of the ITC background signals shows that a fraction (8%) binds ANS with a dissociation constant of approximately 0.2 mM. Measurements were also carried out at pH 4.5. Precipitation of IgG was induced by ANS at concentrations above 0.5 mM, interfering with the ITC measurements. Instead, with the nonfluorescent probes 4-amino-1-naphthalene sulfonate and 1-naphthalene sulfonate, no precipitation is observed. These probes yield differences in the enthalpies of binding to heated and nonheated IgG similar to ANS. The data illustrate that ITC with low-molecular-weight probes is a versatile tool to monitor conformational changes in proteins with a wider application potential than fluorescence measurements.  相似文献   

16.
The enhancement of 1-anilino-8-naphthalenesulfonate fluorescence was observed followed by the binding of the probe to the E. coli membrane. The fluorescence intensity of the probe is quenched upon energization of intact cells. The experiments with sonicated membrane particles, in which the orientation of the membrane is “inside-out”, showed an energy linked enhancement of the fluorescence intensity of the probe. The changes in the fluorescence intensity of fluorochrome-stained membranes can also be induced by generation of K+ ion diffusion potential.  相似文献   

17.
The fluorescent probe 1-anilino-8-naphthalene sulfonate, when bound by the inactive form of phosphorylase b, behaves as if distributed between two different binding sites, whose bound dye emits fluorescence with decay times of 19 and 8 nanosecs. In 0.1 M glycylglycine, pH 7.0, the addition of the allosteric activator adenosine-5′-phosphate or the substrate glucose-1-phosphate results in the progressive loss of the component of longer decay time. At intermediate levels of activator the decay curves could be represented as the sum of the weighted contributions of two species, corresponding to those prevailing in the absence of activator and in excess activator.The activity of glycogen phosphorylase b, which is one of the most extensively studied allosteric enzymes, is controlled by the allosteric activator AMP (1, 2). Binding studies have shown that the binding of AMP in the absence of substrate is strongly cooperative, with a value of the Hill coefficient of 1.7 (2). Binding and kinetic studies have indicated that strong heterotropic cooperativity exists between the combination of the enzyme with AMP and either of the substrates glucose-1-phosphate and inorganic phosphate (1, 2, 3, 4).Phosphorylase b (molecular weight 185,000) consists of two equivalent subunits of molecular weight 92,500. Each subunit contains a single strong binding site for AMP(1, 2, 3).The AMP-induced activation of phosphorylase b has usually been attributed to a conformational transition, AMP being preferentially bound by the active form (1). The high degree of cooperativity of AMP binding has been attributed to the simultaneous conversion of both subunits to the active conformation upon the binding of a molecule of AMP by one subunit (1, 2).The existing kinetic studies have been interpreted as indicating that the binding of substrate likewise favors the transition to the active form, although differences of opinion exist as to the number and equivalence of the active states (1, 2, 5). However, a basic weakness of the model described above is the paucity of direct physical evidence for a conformational change.In recent years a rapid evolution of technique has made it possible to monitor the time decay of fluorescence directly (6). The technique of nanosecond fluorometry has been applied to a number of systems with the objective of analyzing complex decay curves or detecting excited state reactions (7).With the development of programs for analyzing multicomponent decay curves in terms of the lifetimes and amplitudes of the individual emitting species (8) it has become possible to apply nanosecond fluorometry to the problem of monitoring conformational transitions of proteins, and in particular, to the activator - or substrate - induced transformations of allosteric proteins.In general, when emission occurs from a collection of sources with different decay times, we have for the fluorescence intensity i (t) as a function of time, t:
(1)i(t) = j αj, e, -tτj
where αj and τj are the amplitude and decay time, respectively, corresponding to the jth component. If the number of components is small, the experimental curves of i(t) versus t may, in principle, be analyzed by the method of moments to yield the set of values of αj and τj.In this report, we shall describe the results of the application of nanosecond fluorometry to the phosphorylase b system, using the fluorescent probe 1-anilino-8-naphthalene sulfonate (ANS). This probe, which is virtually non-fluorescent in aqueous solution, acquires an intense fluorescence when bound by a non-polar site on a protein (9, 10).In an earlier report, Seery and Anderson have found that the fluorescence intensity of ANS bound to phosphorylase b is sharply reduced in the presence of AMP or substrates. From parallel equilibrium dialysis studies, it was concluded that the greater part of the effect arose from the dissociation of ANS, although it was not possible to demonstrate a quantitative correlation (11). For this reason, it was not possible to make any statement as to the quantum yield or excited lifetime of the residual bound dye.  相似文献   

18.
19.
(22S)-[22-3H1]-Cholesterol was incubated with an adrenocortical preparation and the isolated (22R)-[22-3H1]-22-hydroxycholesterol had a small loss of radioactivity, proving that direct replacement of the hydrogen from the now hydroxylated position occurred.In addition [1-3H1]-4-methylpentanol was isolated, which also had incurred a relatively small loss of its specific activity, thereby excluding (20R)-3β,20-dihydroxycholest-5-en-22-one as an important metabolite in the degradation of cholesterol to pregnenolone by adrenal tissue.  相似文献   

20.
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