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1.
  • 1.1. To characterize an enzyme which metabolizes retinal in liver microsomes, several properties of the enzymatic reaction from retinal to retinoic acid were investigated using rabbit liver microsomes.
  • 2.2. The maximum pH of the reaction in the liver microsomes was 7.6.
  • 3.3. The Km and Vmax values for all-trans, 9-cis and 13-cis-retinals were determined.
  • 4.4. The reaction proceeded in the presence of NADPH and molecular oxygen.
  • 5.5. The incorporation of one atom of molecular oxygen into retinal was confirmed by using oxygen-18, showing that the reaction comprised monooxygenation, not dehydrogenation.
  • 6.6. The monooxygenase activity was inhibited by carbon monoxide, phenylisocyanide and antiNADPH-cytochrome P-450 reductase IgG, but not by anti-cytochrome b5 IgG.
  • 7.7. The enzymatic activity inhibited by carbon monoxide was photoreversibly restored by light of a wavelength of around 450 nm.
  • 8.8. The retinal-induced spectra of liver microsomes with three isomeric retinals were type I spectra.
  • 9.9. The microsomal monooxygenase activity induced by phenobarbital or ethanol were more effective than that by 3-methylcholanthrene, clotrimazole or β-naphthoflavone.
  • 10.10. These results showed that the monooxygenase reaction from retinal to retinoic acid in liver microsomes is catalyzed by a cytochrome P-450-linked monooxygenase system.
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2.
  • 1.1. The pyridoxal phosphate (PLP) modification of the lysine amino groups in cytochrome c causes decrease in the reaction rate with cytochrome c oxidase.
  • 2.2. The rate constants for (PLP);-cyt. c, PLP(Lys 86)-cyt. c, PLP(Lys 79)-cyt. c and native cytochrome c (at pH 7.4, 1=0.02) are 3.6 × 10−3'sec-', 5.5 × 10−3, 5.2 × 10−3-'sec−1 and 9.8 × 10−3sec−1, respectively.
  • 3.3. In spite of the same positive charge of singly PLP-cytochromes c the reaction between PLP(Lys 86)-cyt. c and cyt. c oxidase exhibits the ionic strength dependence that differs from those of the PLP(Lys 79)-cyt. c.
  • 4.4. The rate constants at zero and infinite ionic strength for PLP(Lys 86)-cyt. c is 2-fold less than that for PLP(Lys 79)-cyt. c.
  • 5.5. The positively charged cytochrome c lysines 86 and 79 form two from four or five predicted complementary charge interactions with carboxyl groups on cytochrome c oxidase.
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3.
  • 1.1. The results of chemically crosslinking yeast cytochrome c peroxidase with both horse and yeast iso-1 ferricytochromes c have been studied by a combination of gel electrophoresis and proton NMR spectroscopy.
  • 2.2. The complexes were formed at a variety of potassium phosphate concentrations ranging from 10 to 300 mM using the water soluble crosslinking agent, EDC (l-ethyl-3-[3-(dimethylamino)propyl]-carbodiimide).
  • 3.3. The primary crosslinking product in both cases is the 1:1 covalent complex, but, for each pair of partner proteins the yield of the 1:1 crosslinked complex varies with the salt concentration.
  • 4.4. Furthermore, at low salt concentrations the yield of the 1:1 covalent complex involving horse cytochrome c is much larger than the yield of the 1:1 covalent complex formed with yeast iso-1 cytochrome c, whereas at high salt concentrations the situation is reversed.
  • 5.5. Proton NMR spectroscopy, in combination with gel electrophoresis, provides evidence for the formation of different types of 1:1 complexes for the peroxidase/yeast cytochrome c pair and has been used to study the effect of changes in the solution ionic strength upon both the peroxidases/horse cytochrome c and the peroxidase/yeast cytochrome c complexes.
  • 6.6. This work indicates that electrostatic interactions between proteins play a dominant role in formation of complexes between cytochrome c peroxidase and horse ferricytochrome c, whereas the hydrophobic effect plays a comparatively larger role in stabilizing complexes between cytochrome c peroxidase and yeast iso-1 ferricytochrome c.
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4.
  • 1.1. We have compared the primary structure and the predicted secondary structure of subunit I (COI) of cytochrome oxidase with those of other integral redox enzymes which contain membrane-buried iron centres.
  • 2.2. Some striking analogies have been found between the deduced transmembrane folding for COI and the known three-dimensional structure of the photosynthetic reaction centre of Rhodobacter sphaeroides.
  • 3.3. These structural analogies are paralleled by a fundamental functional analogy between these two redox systems, since they both oxidize reduced cytochrome c at the positive side of the membrane, transferring electrons to membrane-buried metal centres.
  • 4.4. A statistical evaluation has been performed on the amino acid composition of the peptides containing known histidine ligands of the membrane-buried iron in cytochrome b of the bc 1 complex and in the bacterial reaction centre.
  • 5.5. This evaluation was then applied to the peptides which contain conserved histidines in subunit I of cytochrome oxidase, subunit that is known to bind both haem a and a3, indicating which of these histidines are the most likely ligands of the membrane-buried iron of the a-haems.
  • 6.6. A sequence homology has been found between the known oxygen binding site and the haem binding peptide in cyt P450 and two peptides which are conserved in all the sequences of COI, thus indicatingt the possible oxygen catalytic site of cytochrome oxidase.
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5.
  • 1.1. Cytochrome b5 was partially purified from sheep lung microsomes in the presence of detergents Emuigen 913 and cholate by three consecutive DEAE-cellulose and Sephadex G-100 gel filtration chromatographies.
  • 2.2. The specific content ofcytochrome b5 was 16.5 nmol/mg protein and purified cytochrome b5 fractions were free of cytochrome P450, NADPH-cytochrome P450 reductase and NADH-cytochrome b5 reductase activities.
  • 3.3. The influences of increasing concentrations of lung cytochrome b5 on benzphetamine N-demethylation reactions were examined in four different reconstitution systems containing lung cytochrome P 450 LgM2, lung cytochrome P450 reductase and lipid. In each system concentration of reductase was doubled with respect to former system.
  • 4.4. In all systems cytochrome b 5 stimulated benzphetamine Ndemethylase activity especially when cytochrome b5 was present at 0.5:1 molar ratio with respect to cytochrome /P450 LgM2.
  • 5.5. Besides, the greatest fold of increase in benzphetamine N-demethylation activity due to addition of cytochrome b5 was observed in System 1 with the lowest concentration of reductase.
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6.
  • 1.1. One adult male, eight pups (including two full term foetuses) and nine adult female harbour seals (Phoca vitulina) were analysed for indices of mixed function oxidase (MFO) activity.
  • 2.2. MFO activity was present in liver samples, but was at or below detection limits in samples of kidney, lung and pancreas.
  • 3.3. Hepatic ethoxyresorufin O-de-ethylase and benzo[a]pyrene hydroxylase activities were similar to those reported in other seals and in other mammals.
  • 4.4. Cytochromes P-450 and b5 concentrations were slightly lower than those observed in other mammals.
  • 5.5. MFO activities in newborn pups and foetuses were significantly lower than those in adult females.
  • 6.6. No qualitative differences in cytochrome P-450 isozyme distribution between foetal and adult samples could be discerned by electrophoresis.
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7.
Investigation of ligand binding to native cytochrome c, carboxymethyl-Met 80-cytochrome c, myoglobin and haemhexapeptide revealed that the binding of exogenous ligands is modulated by the following factors:
  • 1.Hydrophobicity of the haem environment.
  • 2.Haem accessibility to exogenous ligands, termed the haem crevice ‘open-closed’ parameter.
  • 3.Steric interactions between the protein and the bound ligand.
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8.
  • 1.1. In a continuing investigation of phycocyanin-membrane surface interaction, fluorescence quenching experiments were performed with a mixture of two populations of fluorescence probe-encapsulated phospholipid bilayer vesicles in the presence and absence of phycocyanin.
  • 2.2. These membrane vesicles were prepared with 1,2-dimyristoyl phosphatidylcholine (DMPC), cholesterol and a probe molecule.
  • 3.3. A fluorophore was encapsulated in one population of membrane vesicles, while a quencher was encapsulated in another population of membrane vesicles.
  • 4.4. The result was compared with those of experiments in the presence of other biomolecules, including albumin, cytochrome c, hemoglobin, myoglobin or RNA.
  • 5.5. Interestingly, a one-third reduction of the fluorescence intensity was observed in the mixture of these two populations of membrane vesicles in phycocyanin's presence.
  • 6.6. In contrast, the other biomolecules caused no significant reduction in the fluorescence intensity.
  • 7.7. These findings were evidence of a phycocyanin-induced membrane perturbation.
  • 8.8. This was further demonstrated by a phycocyanin-induced change in the thermotropic behavior of DMPC vesicles, as measured by differential scanning microcalorimetry.
  • 9.9. Such a unique property of phycocyanin is believed to be associated with its known membrane surface-interacting character.
  • 10.10. A possible phycocyanin-modulated membrane-membrane interaction was discussed.
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9.
  • 1.1. The effect of intraventricular injections of various cations or ethylene glycol bis [β-amino ethyl ether]-N,N,N'N-tetra acetic acid (EGTA) on cloacal body temperature (Tc) of young chicks (Gallus domesticus) was investigated.
  • 2.2. K+ and Mg2+ had no effect on Tc while Mn2+ caused a significant decrease.
  • 3.3. Na+ and EGTA caused a significant increase in Tc.
  • 4.4. The control of the set point for body temperature of chicks is similar to that observed in mammals.
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10.
  • 1.1. Mixed-function oxidase (MFO) system components (cytochrome P-450, “418-peak”, cytochrome b5 and NADPH-cytochrome c (P-450) reductase) and inducible antioxidant enzymes (catalase, Superoxide dismutase (SOD), glutathione peroxidase (GPX) and DT-diaphorase) has been determined in digestive glands of mussels (Mylilus galloprovincialis) collected from three Mediterranean coastal locations, exhibiting an organic pollution gradient.
  • 2.2. Cytochrome P-450, the “418-peak”, catalase and SOD showed a good correlation with whole body tissue PAHs and, to a lower extent, with PCBs.
  • 3.3. Microsomal NADPH-dependent DT-diaphorase, but not the NADH-dependent microsomal enzyme or the cytosolic DT-diaphorases, was indicated to increase with pollution exposure.
  • 4.4. The application of such measurements to environmental monitoring is discussed. Given the magnitude of differences observed, and the state of knowledge on enzyme function and mechanisms of toxicity, a multiparameter approach is considered to offer current and future potential for detecting the impact of organic pollution on bivalve molluscs.
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11.
  • 1.1. Diurnal cycles of body temperature, Tb, and energy metabolism, M, at different ambient temperatures (Ta: +5 −+ 32°C) were tested in 13 sunbird species from various habitats and of different body masses (5.2–14.2 g) including one of the smallest passerines, Aethopyga christinae.
  • 2.2. Resting M-level (night) reaches Ta-dependent mean values of 54% (+5°C) and 49% (+25°C) of activity M-levels (day). Expected level is ca 75%.
  • 3.3. Resting metabolic rate of sunbirds lies within the range of theoretically expected values for birds.
  • 4.4. Mean linear metabolism-weight regression of the night values follows: M = 0.102 × W0.712 (M = energy metabolism in kJ/hr and W = body mass in g).
  • 5.5. Thermal conductances, Tc, are lower (−24%) than the predicted values. This is caused by a decrease of Tb at low Ta. Mean nocturnal Tc is 3.2 J/g × hr × °C, mean day-time value is 4.3 J/g × hr × °C.
  • 6.6. The zone of thermoneutrality is, in most species, within a Ta-range of 24–28°C.
  • 7.7. Normal day and night levels of Tb are in the same range as reported for other birds of the same weight class. Tb decreases slightly with falling Ta (partial heterothermia). Lowest recorded Tb was 34.2°C.
  • 8.8. No species tested showed any sign of torpor at night, independent of Ta, body mass or habitat origin.
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12.
  • 1.1. Ferredoxin reductase and ferredoxin were purified from the bovine corpus luteum and their properties compared to the corresponding adrenal proteins.
  • 2.2. The luteal and adrenal proteins had similar absorbance spectra and molecular weights.
  • 3.3. Evidence was obtained from spectrophotometric titrations for formation of 1:1 complexes between luteal ferredoxin reductase and ferredoxin and between ferredoxin and cytochrome P-450scc.
  • 4.4. Adrenal ferredoxin reductase and ferredoxin were equally as effective as luteal ferredoxin reductase and ferredoxin in supporting cholesterol side-chain cleavage by luteal cytochrome P-450scc.
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13.
  • 1.1. Crude extract of the whole digestive tract from the brown shrimp (P. californiensis) was investigated for digestive amylase activity.
  • 2.2. Considerable amylase activity was found at pH 6.5–8.0, with optimum pH at around 7.5.
  • 3.3. Optimum temperature was found between 30–40°C, similar to amylases from other crustaceans.
  • 4.4. Amylase activity was highly halotolerant, having 50% maximum activity at 3 M NaCl.
  • 5.5. Maximum amylase activity was found at 0.01 M NaCl.
  • 6.6. Amylase activity was partially inhibited by the divalent ions Hg2+, Zn2+, Cu2+ and Cr2+.
  • 7.7. Mg2+ and Ca2+ ions seemed to enhance amylase activity.
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14.
  • 1.1. This study deals with the hematological and blood chemistry of 13 adult marsh harriers (Circus aeruginosus).
  • 2.2. No significant differences were observed between male and female groups in any of the parameters.
  • 3.3. The value of white blood cells was 14,677/mm3 heterophils and lymphocytes, these being the most abundant cellular type (81.42 and 12%, respectively).
  • 4.4. Urea and uric acid are present in approximately similar proportions, though birds are said to be uricotelic.
  • 5.5. The cholesterol concentration values determined in our study, are higher than those reported in most other birds.
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15.
  • 1.1. The binding of [14C]cholesterol into rat brain mitochondrial membranes follows an exponential path described by the general formula y = a.ebx. [14C]cholesterol glucoside binding has a sigmoidal character where the “best-fit” curve of this type of binding is the one described by the Hill equation with Hill coefficient h = 2.06. These findings suggest a positive cooperativity in the binding of both compounds into rat brain mitochondrial membranes.
  • 2.2. The specific activity of the outer mitochondrial membrane enzyme monoamine oxidase was linearly decreased at different concentration of cholesterol or its glucoside.
  • 3.3. The specific activity of the inner mitochondrial membrane enzyme succinate-cytochrome c reductase was linearly decreased, while that of Rotenone-sensitive NADH-cytochrome c reductase was exponentially increased, at different concentrations of cholesterol.
  • 4.4. These results are discussed in terms of specific interactions of cholesterol with constituent mitochondrial membrane lipids and their implications for deviations from normal neuronal function.
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16.
  • 1.1. The sterol composition of Condylactis aurantiaca and Cereus pedunculatus (phylum Coelenterata, class Anthozoa, order Actiniaria) was investigated by silver nitrate-silica gel column chromatography, combined gas chromatography-mass spectrometry and NMR.
  • 2.2. Sea anemones contained Δ3-sterols accompanied by small amounts of Δ5.7-sterols and ring saturated sterols.
  • 3.3. Sterols with 27 carbon atoms are predominant and cholesterol is the principal sterol, followed by 24-methylenecholesterol.
  • 4.4. A 4-methyl ring saturated sterol, identified as 4,24-dimethyl-5α-cholest-24(28)-en-3β-ol, occurs in small amount in Actiniaria, accompanied by the corresponding 4-demethylstanol.
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17.
  • 1.1. A method for purifying undischarged nematocysts from Hydra and other cnidarians is described.
  • 2.2. Isolated cysts (relative densities 1.22–1.24) evaginate their tubular content even after previous dehydration.
  • 3.3. The cyst wall is permeable to dyes of mol. wts up to 600,000.
  • 4.4. Approximately two-thirds of the cyst's dry wt are soluble proteins. Eighty per cent of them are of low mol. wt and highly anionic, presumably serving as binding sites for Ca2+ and Mg2+.
  • 5.5. The other 20% includes 30 different proteins amongst them toxins and enzymes (phospholipase and little proteases but no collagenase, chitinase or hyaluronidase).
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18.
  • 1.1. Freshwater gammarids from 900–1400 m depths lose Na at 1 atm, 4°C, while related shallow water gammarids are near neutral Na balance.
  • 2.2. Na+ influx rates are similar at 1 atm, 4°C, for abyssal and shallow water gammarids of similar weight.
  • 3.3. Na+ efflux is faster for abyssal gammarids than for comparable shallow water gammarids.
  • 4.4. Compressing abyssal gammarids to 90–140 atm increases Na+ influx rates enough to restore neutral Na balance, while in shallow water crustaceans, compression decreases Na+ influx.
  • 5.5. Na+ influx rates in Baikalian gammarids vary with the 0.55 power of weight.
  • 6.6. The equation Fma × t = 1.3 × W0.55 μEq/hr/animal applies to freshwater crustaceans over the weight range from 0.03 to 35 g.
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19.
  • 1.Measurements of body temperature (Tb) in the field demonstrate that Platypedia putnami var. lutea Davis regulates Tb through behavioral mechanisms.
  • 2.Thermal responses (minimum flight temperature 17.3°C, maximum voluntary tolerance-temperature 32.5°C, and heat torpor temperature 44.4°C) of P. putnami var. lutea are related to the altitude of their habitat.
  • 3.Water loss rates increase with ambient temperature (Ta). Water loss rates are not significantly different at the extremes of the active Tb range but increase significantly when exposed to elevated Ta.
  • 4.Acoustic activity was restricted at 6.7°C Tb range. This is similar to the lower end of the Tb range for singing measured in cicada species that produce sound with a timbal mechanism.
  • 5.The use of the wing musculature to produce acoustic signals in P. putnami var. lutea does not increase the Tb range over which the species can call compared to timbal calls produced by other cicada species.
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20.
  • 1.1. To define the respiratory function of haemoglobin in male Daphnia magna, the swimming activity, the depression of oxygen uptake by treatment with carbon monoxide and in vivo oxygenation of Hb at various oxygen pressures were investigated.
  • 2.2. The P50, values for the purified Hbs from male and female red animals were 2.0 and 2.7 torr in 0.1 M phosphate buffer (pH 7.2) at 20°C, respectively.
  • 3.3. The isoelectric focusing patterns of the purified Hbs from male and female red animals showed only small differences in Hb components of high PI values.
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