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Orientation and vertical fluctuations of spin-labeled analogues of cholesterol and androstanol in phospholipid bilayers.

We have used ESR and NMR linewidth broadening by spin-labels to determine the overall orientation of spin-labeled analogues of cholesterol and androstanol in egg lecithin bilayers. While the cholesterol analogues were found to have a single orientation in each monolayer, with the acyl chain pointing towards the center of the bilayer, the androstanol analogue appeared, at least in sonicated vesicles, to experience two opposite orientations in the same monolayer, very likely with a rapid reorientation. The possibility of rapid vertical fluctuations of the sterol molecules within the phospholipid bilayer is also discussed.

Androstanols

An electron-spin-resonance spin-label study of the interaction of purified Mojave toxin with synaptosomal membranes from rat brain.

The structural properties of isolated purified rat brain synaptosomal membranes, both in the presence and absence of purified active toxin of the Mojave snake Crotalus scutulatus scutulatus, were studied by spin-label electron spin resonance techniques. The spectra from eight different positional isomers of nitroxide-labelled stearic acids, a rigid steroid androstanol, and a spin-labelled phosphatidylcholine intercalated into the synaptosomal membranes, were obtained as a function of temperature from 4-40 degrees C. The flexibility gradient (from spin-label order parameters) and polarity profile (from isotropic splitting factors) across the synaptosomal membranes, was characteristic for lipid bilayers. The nitroxide spin-labelled steroid, androstanol, intercalated into the synaptosomal membrane, revealed the abrupt onset of rapid cooperative rotation about the long axis of the molecule at 12 degrees C showing that the lipid molecules are rotating rapidly around their long axes at physiological temperatures. The presence of the Mojave toxin affected the synaptosomal membrane in a complex manner, depending upon the temperature and the position of the nitroxide label on the alkyl chain of the stearic acid probe. Mojave toxin exerted little effect on the flexibility gradient of the synaptosomal membrane at 20 degrees C, a temperature at which the acyl chain labels detected a structural change in the membranes. At temperatures lower than 20 degrees C, the Mojave toxin produced a change in the flexibility gradient of the synaptosomal membrane which indicated an increased disordering in the upper region of the membrane and a concomitant increased ordering of the acyl chains in the deeper regions of the membrane. At temperatures higher than 20 degrees C, the order profile of the synaptosomal membrane was shifted by the presence of the Mojave toxin in a manner which indicated that the outer parts of the membrane were more rigid and the inner regions more fluid, than in controls. A cross-over point for the perturbation occurred at C8-9, which is about 12-14 A into the membrane. This is the approximate depth of the hydrophobic pocket shown in pancreatic phospholipase A2 [Drenth et al. (1976) Nature (Lond.) 264, 373-377], a protein likely to be homologous to the basic subunit of the toxin. At all temperatures, rotational lipid motion was inhibited by the toxin as indicated by the steroid probe. The electron spin-resonance spin-label results are interpreted in terms of the partial penetration of the basic subunit of the intact toxin into the membrane, disordering the ordered chains at low temperature and ordering the disordered chains at physiological temperatures. The purified individual toxin subunits did not perturb the membrane lipids at physiological temperatures implying that both subunits must be associated for activity of the toxin which is confirmed by toxicity studies.

Animals

Phospholipid chain immobilization and steroid rotational immobilization in acetylcholine receptor-rich membranes from Torpedo marmorata.

1. The ESR spectra of both phosphatidylcholine and phosphatidylethanolamine spin labels reveal an immobilized lipid component (tau R greater than or equal to 50 ns), in addition to a fluid component (tau R approximately 1 ns), in acetylcholine receptor-rich membranes prepared from Torpedo marmorata electroplax according to the method of Cohen et al. (Cohen, J.B., Weber, M., Huchet, M. and Changeux, J.-P. (1972) FEBS Lett. 26, 43--27). 2. The ESR spectra of the androstanol spin label display a component corresponding to molecules which are immobilized with respect to rotation about the long molecular axis (tau R greater than or equal to 50 ns), in addition to the fluid lipid bilayer component in which the molecules are rotating rapidly about their long axes (tau R approximately 1 ns). This immobilized component is observed throughout the temperature range 2--22 degrees C, at an approximately constant relative intensity of approx. 45% of the total, which is quantitatively the same as previously observed with fatty acid spin labels.

Androstanols

Lipid-protein interactions and protein dynamics in vesicles containing the nicotinic acetylcholine receptor: a study with ethanol.

Electron paramagnetic resonance (EPR) spectroscopy was used to study the action of ethanol on the protein side chain motions of the nicotinic acetylcholine receptor (nAcChoR) in alkaline extracted membranes from Torpedo nobiliana. EPR spectra of the nAcChoR derivatized with maleimide spin label contain both strongly and weakly immobilized components. The rotational correlation time of the strongly immobilized component decreases by a factor of 2-3-fold with the addition of 1.6 M ethanol, while that of the weakly immobilized component is not significantly altered. EPR spectroscopy was also used to probe the lipid environment immediately surrounding the nAcChoR with stearic acid and phosphatidylcholine spin labeled at the fourteenth acyl carbons (14-SASL and 14-PCSL, respectively), and the steroid spin label androstanol (ASL). EPR spectra of these probes reveal a component corresponding to lipids that are motionally restricted by the receptor (annular lipids) in addition to a more fluid component arising from bulk lipid. Using spectral subtraction, the order of selectivity of these spin labels for the nAcChoR was determined to be ASL > or = 14-SASL > 14-PCSL. The estimated rotational correlation times of the high affinity 14-SASL and ASL probes ranged from approx. 20 to 35 ns. The correlation times of the lower affinity 14-PCSL were generally shorter than those for 14-SASL and ASL and ranged from about 10 to 25 ns. The addition of up to 0.9 M ethanol altered neither the affinity nor the mobility of the motionally restricted EPR component. This suggests that ethanol's actions on the nAcChoR are not mediated via changes at the lipid/protein interface near the center of the bilayer.

Animals

Comparative study of the lipid dynamics in the surface layer of porcine and human high density lipoprotein subclasses by spin labeling.

In order to obtain information on the determinants of the lipid dynamics in the high density lipoproteins (HDL), we have compared the structural properties of human HDL subclasses with porcine HDL artificially subdivided into density subfractions corresponding to those of human HDL. Four different positional isomers of spin labeled fatty acids and spin labeled androstanol experienced more restricted motion in porcine HDL than in the human HDL2 and HDL3 subclasses. The differences in the spin label motion could not be accounted for on the basis of the differences in the chemical composition of the lipoproteins examined. They are, however, most probably due to the specific properties of the interactions between lipids and proteins that differ among the lipoproteins.

Animals

Comparison of large unilamellar vesicles prepared by a petroleum ether vaporization method with multilamellar vesicles: ESR, diffusion and entrapment analyses.

Large unilamellar vesicles, prepared by a petroleum ether vaporization method, were compared to multilamellar vesicles with respect to a number of physical and functional properties. Rotational correlation time approximations, derived from ESR spectra of both hydrophilic (3-doxyl cholestane) and hydrophobic (3-doxyl androstanol) steroid spin probes, indicated similar molecular packing of lipids in bilayers of multilamellar and large unilamellar liposomes. Light scattering measurements demonstrated a reduction in apparent absorbance of large unilamellar vesicles, suggesting loss of multilamellar structure which was confirmed by electron microscopy. Furthermore, large unilamellar vesicles exhibited enhanced passive diffusion rates of small solutes, releasing a greater percentage of their contents within 90 min than multilamellar vesicles, and reflecting the less restricted diffusion of a unilamellar system. The volume trapping capacity of large unilamellar vesicles far exceeded that of multilamellar liposomes, except in the presence of a trapped protein, soy bean trypsin inhibitor, which reduced the volume of the aqueous compartments of large unilamellar vesicles. Finally, measurement of vesicle diameters from electron micrographs of large unilamellar vesicles showed a vesicle size distribution predominantly in the range of 0.1--0.4 micron with a mean diameter of 0.21 micron.

Chromates

Stoichiometry and specificity of lipid-protein interaction with myelin proteolipid protein studied by spin-label electron spin resonance.

The interaction of spin-labeled lipids with the myelin proteolipid apoprotein in complexes with dimyristoylphosphatidylcholine of varying lipid/protein ratios has been studied with electron spin resonance spectroscopy. A first shell of approximately 10 lipids per 25 000-dalton protein is found to be motionally restricted by the protein interface. This stoichiometry is consistent with a hexameric arrangement of the protein in the membrane. A selectivity of the various spin-labeled lipids for the motionally restricted component at the protein interface is found in the order stearic acid greater than phosphatidic acid greater than cardiolipin approximately greater than phosphatidylserine greater than phosphatidylglycerol approximately equal to phosphatidylcholine greater than phosphatidylethanolamine greater than androstanol approximately greater than cholestane.

Animals

Spin-label studies of lipid-protein interactions in (Na+,K+)-ATPase membranes from rectal glands of Squalus acanthias.

Lipid-protein interactions in (Na+,K+)-ATPase-rich membranes from the rectal gland of Squalus acanthias have been studied by using spin-labeled lipids in conjunction with electron spin resonance (ESR) spectroscopy. Lipid-protein associations are revealed by the presence of a second component in the ESR spectra of the membranes in addition to a component which corresponds very closely to the ESR spectra obtained from dispersions of the extracted membrane lipids. This second component corresponds to spin-labeled lipids whose motion is very significantly restricted relative to that of the fluid lipids in the membrane or the lipid extract. A stoichiometry of approximately 66 lipids per 265 000-dalton protein is found for the motionally restricted component of those spin-labeled lipids (e.g., phosphatidylcholine) which show least specificity for the protein. This corresponds approximately to the number of lipids which may be accommodated within the first shell around the alpha 2 beta 2 protein dimer. A selectivity of the various spin-labeled lipids for the motionally restricted component associated with the protein is found in the following order: cardiolipin greater than phosphatidylserine approximately stearic acid greater than or equal to phosphatidic acid greater than phosphatidylglycerol approximately phosphatidylcholine approximately phosphatidylethanolamine approximately androstanol.

Animals

Calcium-induced phase separation phenomena in multicomponent unsaturated lipid mixtures.

The ability of calcium to induce phase separation in multicomponent lipid mixtures containing various unsaturated species of acidic and neutral phospholipids has been investigated by 31P NMR, 3H NMR, and small-angle X-ray diffraction techniques. It is shown that, in unsaturated (dioleoyl-) phosphatidylglycerol (PG)/phosphatidylethanolamine (PE) (1:1) and phosphatidic acid (PA)/phosphatidylcholine (PC) (1:1) mixtures, calcium is unable to induce lateral phase separation of the acidic and neutral lipids and that all the lipids adopt a hexagonal (HII) phase in the presence of calcium. In multicomponent mixtures containing one or more acidic species the presence of cholesterol either facilitates calcium-induced lamellar to hexagonal (HII) transitions for all the lipid components or, in systems already in a hexagonal (HII) phase, mitigates against calcium-induced lateral phase separations. Further, cholesterol is shown to exhibit no preferential interaction on the NMR time scale with either PC, PE, or phosphatidylserine (PS) when the lipids are in the liquid-crystal state. The ability of cholesterol to directly induce HII phase formation in PC/PE mixtures is also shown to be common to various other sterols including ergosterol, stigmasterol, coprostanol, epicoprostanol, and androstanol.

Calcium

Method for screening urinary steroids by gas chromatography.

Numerous methods are available for measuring urinary steroids in evaluating endocrine dysfunctions. Measurements of these particular steroids, or groups of them, usually involve tedious isolation methods, corrections for interferences and losses of the steroid, and (or) expensive reagents. We show how gas-liquid chromatography provides a rapid, sensitive, and direct method for several steroid metabolites in urine. Androstanol, androsterone, etiocholanolone, dehydroisoandrosterone, pregnanediol, pregnanetriol, 11-keto-17-ketosteroids, and the 11beta-hydroxy-17-ketosteroids can be identified and quantified.

Adult

Selective reactions in the analytical characterisation of steroids by gas chromatography-mass spectrometry.

The analytical characterization, by GC-MS, of individual compounds in mixtures of steroids, such as occur frequently in biological extracts, is difficult because of the close similarities in structure and properties of many components. The improved separating power of capillary (open-tubular) columns alleviates the problem, but does not solve it fully: for example, the coincidence of retention times of two different compounds may still be virtually complete. Comparative analyses on two distinctively different phases afford one valuable application of selectivity, but may not always be feasible when costly columns are required. Comparative analyses of the sample, before and after effecting its modification by well-defined reactions, are inexpensive and are particularly when selective transformations are used. The use of the microbial enzyme cholesterol oxidase as a selective oxidant for 3 beta-hydroxysteroids (chiefly limited to 4-ene, 5-ene and 5 alpha-types) is illustrated for a model mixture of androstanols related to the boar pheromone (5 alpha, 16-androsten-3 alpha-ol). Retention regularities and changes in mass spectra enhance the reliability of identifications. An exploratory application of cholesterol oxidase in the analysis of minor "polar" sterols in human serum is reported. Most of the known minor sterols are good substrates for the enzyme, and their transformation products yield distinctive GC-MS data, as exemplified for the 7 alpha- and 7 beta-hydroxycholesterols. Another convenient and versatile selective reagent is methaneboronic acid, which yields cyclic esters of suitably constituted diols. These derivatives have shorter retention times (on "non-polar" phases) than the di-TMS ethers, chiefly by virtue of their much lower molecular weights. The mass spectra of cyclic boronates generally show clear molecular ions, also fragmentations that complement the information obtainable from the di-TMS ethers. These features are illustrated for a group of diols and triols of the 5 alpha-pregnane series.

Androstanes

Dopamine D1 receptor-stimulated release of acetylcholine in rat striatum is mediated indirectly by activation of striatal neurokinin1 receptors.

Activation of dopamine D1 receptors is thought to stimulate release of striatal acetylcholine (ACh) indirectly, possibly through local release of substance P which, in turn, may enhance release of ACh. To test this hypothesis, in vivo microdialysis was used to assess the effect of neurokinin1 (NK1) receptor blockade on D1 agonist-induced increases in ACh release in the striatum of awake, freely moving rats with and without a unilateral 6-hydroxydopamine-induced lesion of the nigrostriatal pathway. Local perfusion with the D1 agonist (+-)-1-phenyl-2,3,4,5-tetrahydro-(1H)-3- benzazepine-7,8-diol hydrochloride (SKF 38393; 1-25 microM for 20 min) increased striatal ACh release in both intact rats and rats with a 6-hydroxydopamine-induced lesion, although the increase was greater in magnitude in rats with a lesion. Local application of the NK1 antagonist, (2S,3S)-cis-2-(diphenylmethyl)-N- [(methoxyphenyl)methyl]-1-azabicyclo[2.2.2]octan-3-amine (CP-96,345; 10 and 25 microM), but not its less active enantiomer (2R,3R)-cis-2-(diphenylmethyl)-N-[(2-methoxyphenyl)methyl]-1- azabicyclo[2.2.2]octan-3-amine (CP-96,344; 10 and 25 microM), decreased the elevation in ACh induced by SKF 38393 in both intact rats and rats treated with 6-hydroxydopamine. Systemic administration of the NK1 antagonist 17-beta-hydroxy-17-a-androstanol[3.2- b]pyrimidol[1,2-a]benzimidazole hydrochloride (WIN 51,708; 20 mg/kg i.p.) also reduced the increase in ACh release induced by local perfusion of SKF 38393.(ABSTRACT TRUNCATED AT 250 WORDS)

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben

Female androgenic alopecia. The 3 alpha,17 beta-androstanediol glucuronide/sex hormone binding globulin ratio as a possible marker for female pattern baldness.

Twenty-five women fulfilling the criteria for female alopecia, of either the male pattern baldness type or female pattern baldness type, were evaluated for hormone markers to delineate the clinical baldness patterns. Women with a marked increase in the 3 alpha,17 beta-androstanediol glucuronide/sex hormone binding globulin ratio and low serum sex hormone binding globulin were noted to have female pattern baldness. This pattern of baldness may represent hair loss from the influence of minimal androgen excess on genetically sensitive hair bulbs in the absence of other signs of maximal androgen excess, including hirsutism, acne, or virilism.

Adult

Steroid hormone receptors and clinical usefulness in human breast cancer.

For more precise prediction of response to endocrine therapy in patients with advanced breast cancer, we investigated the correlation between the presence of combination of estrogen (ER), progesterone (PgR) receptors, or combination of ER, PgR and androgen receptor (AR) and response to therapy. The patients with ER+, PgR+ tumors survived longer than those with ER+, PgR-, or ER-, PgR- tumors. A better response rate with longer survival time was obtained in patients with tumors that had three positive receptors or PgR+ and/or AR+ in addition to ER+ than in those with tumors of other combinations. According to the sequential assays of ER in tumors in several stages of breast cancer, it is likely that the positive rate of ER becomes lessened by the progression of cancer and by treatments. We stressed the significance of steroid hormone receptor assay in the mastectomy specimens for the prediction of response of therapy in case of the future recurrence of malignancy.

Adrenalectomy

A phase III trial of oral high-dose medroxyprogesterone acetate (MPA) versus mepitiostane in advanced postmenopausal breast cancer.

A randomized controlled trial was performed to compare the therapeutic results of oral high-dose medroxyprogesterone acetate (HD-MPA) versus mepitiostane (MS) in the treatment of postmenopausal breast cancer. MPA was given at three doses of 400 mg orally daily to 47 patients and produced objective responses in 19 cases (40.4%). An objective response was seen in 14 of the 40 control patients given MS at two doses of 10 mg orally daily (35.0%). Among patients with bone metastases, 6 of 19 (31.6%) for HD-MPA and 2 of 13 (15.4%) for MS showed objective responses. The other merits of HD-MPA suggested in the study were improvement in performance status, increase in appetite, and myeloprotective effect.

Adult

A chemiluminescent immunoassay for the direct measurement of urinary 5 alpha-androstane-3 alpha, 17 beta-diol-glucuronide in urine.

We described a chemiluminescent immunoassay (CIA) for 5 alpha-androstane-3 alpha, 17 beta-diol-glucuronide (3 alpha-diol-G) in human diluted urine. This method allowed the direct measurement in 1 microliter of urine avoiding the hydrolysis and extraction steps for sample pretreatment commonly used in routine methods. The hapten 3 alpha-diol-G was synthesized by a Koenigs-Knorr reaction. The immunogenic complex, 3 alpha-diol-G conjugated to bovine serum albumin (BSA), was employed to induce the formation of specific antibodies in New Zealand rabbits. In addition, the required chemiluminescent (CL) tracer was prepared. The characteristics of the antibody was determined as regard to specificity and sensitivity and the precision of the assay methods established. In 22 hirsute women affected by polycystic ovarian syndrome we found 3 alpha-diol-G values significantly (p less than 0.01) higher (146.28 +/- 73.77 micrograms/g of creatinine; mean +/- SD) than those observed in normal women (72.1 +/- 32.58 micrograms/g of creatinine; mean +/- SD).

Adult