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M Schara

Publications and source records attributed to M Schara.

15 recordsLinked to original sources

Spin-labeled phorbol esters and their interactions with cellular membranes--IV. Lipophilic binding and molecular orientation of spin-labeled phorbol-12,13-diesters in human erythrocyte membrane.

In human erythrocyte membranes, membrane binding of spin-labeled TPA-analogous phorbol (doxyl)esters [(n,m)PA] was investigated during measurement of the kinetics of the decay of their electron paramagnetic resonance signal by ascorbate reduction. In membrane-bound (n,m)PA the reduction rate was dependent of the position of doxyl in the aliphatic chain of their 12-O-acyl moiety. To describe quantitatively the reaction kinetics observed, two hypotheses (models) were developed and used. Model 1 is based on the assumption that ascorbate reduction takes place in the extracellular space. In this case the experimental data could be fitted by the partition and permeability coefficients of (n,m)PA determining model 1 only, if non-realistic values of these parameters were used. The more refined model 2, corresponding to a bilayer membrane structure, assumes the reduction to take place in the hydrophilic region of the membrane. Assuming a finite probability of finding the doxyl group within the hydrophilic membrane region, model 2 describes quantitatively the dependence of the reduction rate on the position of the doxyl in the aliphatic chain of the (n,m)PA used. From the validity of this model it may be postulated that the molecular orientation of TPA-analogous (n,m)PA in the bilayer membrane is determined by an anchoring of their lipophilic ester moiety in the lipophilic region of the membrane bilayer, thus locating the hydrophilic phorbol moiety within the hydrophilic region of the membrane. With regard to the well-known categories of non-specific versus specific binding of bioactive phorbol esters to protein kinase C/membrane complexes it is deduced that anchoring of (n,m)PA (and hence TPA) in the hydrophobic interior of the membrane structure may be the molecular equivalent of their non-specific binding.

Ascorbic Acid

Spin-labeled phorbol esters and their interactions with cellular membranes--V. Electron paramagnetic resonance of spin-labeled phorbol-12,13-diesters bound to their receptors in mouse brain particulate fraction.

The relatively small concentrations required for in vivo bioactivity of diterpene ester skin irritants and promoters (approximately 10 nmol per animal; approximately 10 nM in cell cultures) has discouraged studies of EPR spectra of bioactive, TPA-analogous, spin-labeled phorbol-12,13-diesters [(n,m)PA] bound to their membrane receptors, protein kinases C (PKC). To meet the requirements of present EPR spectrometers, particulate fraction from mouse brain containing at least 25 x 10(-12) mol of receptors/mg protein (PKC species) were employed together with certain (n,m)PA selected to give an optimal ratio of specific to non-specific binding. For selection and optimization of experimental conditions, a theoretical model was developed that considers all characteristic parameters of the system. By fitting the model calculations to the experimental data of competitive agonist displacement from the particulate fraction of tritium-labeled TPA, the dissociation constants Kd for four selected (n,m)PA used as antagonists were determined. Optimal experimental conditions are met by (5,6)PA and by (5,8)PA, in that for both compounds the relative amount of displaced (n,m)PA is in accordance with the predictions derived from the model. Moreover, the model turned out also to be reliable for samples containing either small or large amounts of membranes. To obtain an EPR spectrum of an agonist bound to brain particulate fraction, the (5,6)PA was used. It shows a broad EPR spectrum typical for an immobilized molecule. The spectrum changes if an excess of TPA is added to the system; the slight differences in shape are due to displacement of (5,6)PA from specific receptor sites by non-labeled TPA and show up as a decreased central peak amplitude. This is the first time that the agonist/receptor interaction of a diterpene ester type irritant and tumor promoter has been demonstrated by direct spectroscopic measurement.

Animals

Molecular motion of drugs in hydrocolloids measured by electron paramagnetic resonance.

The effects of a polymer, the Li-salt copolymer of methylmethacrylic acid, and its methyl ester on the motion of drug molecules in hydrocolloids were studied. The investigation was carried out by means of electron paramagnetic resonance (EPR) using the model nitroxide tempol, and the spin-labeled drugs lidocaine (sl-lid) and dexamethasone (sl-dex). Synthesis of sl-dex was performed. Spin-labeled molecules dissolved in hydrocolloids undergo a fast reorientation motion. The decreasing order of rotational correlation times (tau)--sl-dex greater than sl-lid greater than tempol--suggests that the size and the shape of the molecules strongly affect their motion. The inhibition of motion of larger molecules depends also on their flexibility. The tau values indicate proportionality of the microviscosity of hydrocolloids to the polymer concentration. Rotational motion is dependent on the local environment conditioned by the free spaces between polymer molecules.

Colloids

Amphiphilic derivatives of betaine esters as modifiers of macrovesicular BLM.

A series of amphiphilic derivatives of betaine esters (V-n), with the chemical structure (CH3)3N+COOCnH2n + 1Cl- (n = 10, 12, 14 or 16) were studied with respect to their effects on the electrical properties of lecithin macrovesicular membranes. Normalized resistance and breakdown voltage were found to depend on the V-n concentration in the membrane and on the alkyl chain length (n). Resistance decreases up to about 10(4) ohm.cm2 and breakdown voltage decreases by 111 mV were detected in the V-n: lecithin molar ratio range measured (0.005-0.05). Maximal decrease in breakdown voltage was observed for V-14. These findings together with the featured anionic selectivity suggest that, due to the interaction of V-n with phospholipids, hydrophilic pores are formed in the lipid bilayers. This assumption is supported by the results obtained by electron paramagnetic resonance (EPR) measurements which showed no collective changes in bilayer dynamics or ordering. In particular, rotational correlation times and order parameters of the spin probe molecules dissolved in the membrane did not change in the concentration range tested. Since a large number of defects in the membrane can be expected to influence the collective ordering and dynamics, this observation also suggest that the number of pores formed is small.

Betaine

Spin probe reduction in cells and tissues.

The reduction rates of different nitroxides in rat lung tissue were measured by electron paramagnetic resonance. We confirmed that the reduction rate of nitroxide spin probe molecules is coupled with their structure and transport characteristics. Oxygen was found to slow down the reduction rate of nitroxides in rat lung tissues. On the basis of these findings it can be concluded that most nitroxide properties described for homogeneous systems--cells and tissue homogenates--are also valid for heterogeneous systems, which is important for the application of nitroxides as metabolically active NMR contrast agents.

Aerobiosis

Spin-labeled phorbol esters and their interactions with cellular membranes. III. Skin irritant and tumor-promoting activities of spin-labeled phorbol-12,13-diesters and relationships to their particular structures.

Sixteen 'doxyl' spin-labeled 12,13-(acetate, acylates) of phorbol were assayed in NMRI mice for irritant and for tumor-promoting activity. The spin-labeled positionally isomeric (n,m)PA- and AP(n,m)-type esters carry straight aliphatic acyl chains of different overall lengths N (number of C atoms). Within the chains the 'doxyl' label is located in different positions (n,m). The potency of some of the esters as irritants and as promoters is comparable to or even higher than that of the prototype diterpene ester promoter 12-O-tetradecanoylphorbol-13-acetate and its positional isomer 12-O-acetylphorbol-13-tetradecanoate. Their irritancies on the ear and their promoting activities on the back skin depend strongly on the structural features of the acyl chain carrying the spin label. Based upon the bioactivities of individual esters biologically meaningful probes were defined for investigations of the molecular interaction of phorbol-ester-type promoters with cellular targets for electron paramagnetic resonance.

Animals

Influence of vinblastine containing chemotherapy on tumor tissue membrane fluidity; an EPR study. A case report.

The influence of vinblastine (VLB) in combined chemotherapy on tumor cell membrane fluidity of a patient with exulcerated soft tissue sarcoma was studied by the electron paramagnetic resonance method (EPR). Tissue samples were taken before and after applications of VLB, Cis-Platinum (CDP) and combined intraarterial chemotherapy (IAC) and incubated with the spin probe, the palmitic acid methylester spin label analog, MeFasl (10, 3) incorporating into the cell membranes. EPR spectra of the labelled tissue samples were measured. Within few days after application of the chemotherapeutic drugs some oscillations of the membrane fluidity in the tissue were observed, while after a longer period of few weeks the relative amount of cells with greater membrane fluidity was found to decrease. Furthermore, an unexpected gradual increase in the EPR signal intensity after incubation of the tissue with the spin probe, probably due to an oxidative process in this particular sarcoma tissue was observed. These data could be useful for understanding of drug induced changes in cell membranes and for future timing of drug treatments in combined schedules.

Antineoplastic Combined Chemotherapy Protocols

Effect of temperature on Ca-ATPase from sarcoplasmic reticulum membranes: ESR studies.

Using spin-labeled fatty acid derivatives and maleimide, the effect of temperature on the structural state of various parts of the lipid bilayer of sarcoplasmic reticulum (SR) membranes and the segmental motion of the Ca-ATPase molecule were investigated. The mobility of the spin probes localized in the hydrophobic zone and the outer part of the SR membrane was shown to increase with a rise in temperature from 4 to 44 degrees C, the temperature of 20 degrees C being critical for these changes. In the presence of ATP, critical changes in the spin probe mobility occur at lower temperatures, while in the presence of ATP and Ca2+ they are observed at 20 degrees C for a spin probe localized in the outer part of the SR membrane. The mobility of a spin probe localized in the hydrophobic part of the membrane increases linearly with a rise in temperature. In the absence of ligands, the segmental motion of Ca-ATPase changes linearly within a temperature range of 10-30 degrees C. However, when ATP alone or ATP and Ca2+ are simultaneously added to the incubation mixture, the protein mobility undergoes critical changes at 20 degrees C. The Arrhenius plots for ATPase activity and Ca2+ uptake rate in SR membrane preparations also have a break at 20 degrees C. It is assumed that changes in the structural state of membrane lipids produce conformational changes in the Ca-ATPase molecule; the enzyme seems to be unsensitive to the structural state of the membrane lipid matrix in the absence of the ligands.

Animals

An ESR study of the influence of some physico-chemical factors on the conformation of a postsynaptic acetylcholinesterase.

1. In a previous ESR study of a membrane acetylcholinesterase (EC 3.1.1.7) we found, contrary to observations by other authors, spectra indicating that the active serine might be located in a pocket of the enzyme surface. In order to inquire into this possibility, ESR spectra were studied under the influence of different physico-chemical factors known to cause an unfolding of proteins. 2. The active serine of the postsynaptic membrane acetylcholinesterase of Torpedo marmorata electric organ was spin labeled using 1-oxyl-2, 2, 6, 6-tetramethyl-4-piperidinyletoxyphosphonofluoridate. 3. The effect of the chosen physico-chemical factors was an increase in the rotational freedom of spin labels; this result corroborates the suggestion that the active center of our acetylcholinesterase preparation is located in a pocket.

Acetylcholinesterase

Study of the arrangement of crystallites in gamma-irradiated human enamel by electron paramagnetic resonance.

The arrangement of tooth enamel microcrystals has been studied on CO3-3 bound electrons by electron paramagnetic resonance. It was found that noncarious human maxillary central incisors have a greater degree of alignment of tooth enamel microcrystals than the carious ones. The outermost surface layer of enamel showed a greater crystallite degree of alignment than other parts.

Crystallography