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Salt-dependent structure change and ion binding in cytochrome c studied by two-dimensional proton NMR.

To search for salt-dependent structure changes that might help to explain physicochemical differences observed in previous solution studies, two-dimensional proton NMR spectra of reduced and oxidized cytochrome c were recorded at relatively high and low salt concentrations. The results rule out substantial ionic strength dependent structure change in either redox form over the salt concentrations tested (5 mM phosphate to 5 mM phosphate plus 200 mM NaCl, at pH 7). Chemical shift changes were found for several residues within a limited segment of the oxidized protein, most prominently in the sequence Lys-86, Lys-87, Lys-88, Thr-89. A salt-dependent binding of phosphate anion(s) at this site, as observed earlier by others, is indicated. The binding of one or two phosphates at the cytochrome c surface can explain earlier small-angle X-ray scattering observations of an increase in the calculated radius of gyration of the oxidized protein at the same low-salt condition used here. Other observations, by ultraviolet resonance Raman and 1D NMR spectroscopies, of salt-dependent changes could not be corroborated, but may depend on the still lower salt used and the absence of phosphate. The results obtained support the view that the absence of sizeable redox-dependent structure change observed in X-ray and NMR studies at varying salt conditions is characteristic of the protein at all salt conditions above the low millimolar range. Physicochemical differences between oxidized and reduced cytochrome c apparently represent differences in stability without patent structure change.

Amino Acid Sequence

Fourier transform infrared evidence for proline structural changes during the bacteriorhodopsin photocycle.

Structural changes involving bacteriohodopsin proline residues have been investigated by Fourier transform infrared difference spectroscopy. Bacteriohodopsin (bR)-producing Halobacteria halobium were grown on a stringent medium containing either ring-perdeuterated proline or 15N-labeled proline. Comparison of the difference spectra obtained from the photoreactions of these labeled bR samples with those for unlabeled bR has led to the assignment of peaks due to proline vibrations. [proline-N15]bR exhibited a 15-cm-1 isotopic downshift of peaks in the 1420- to 1440-cm-1 region of the bR----K and bR----M difference spectra as well as a similar downshift of peaks found in the absolute absorption spectrum of bR. In contrast, [proline-D7]bR did not cause shifts in this region of the difference spectra. These results indicate that one or more prolines undergo a structural rearrangement during the bR photocycle involving the Xaa-Pro C--N peptide bond. This change may be directly coupled to the light-induced isomerization of the retinal chromophore from all-trans-retinal to 13-cis-retinal.

Bacteriorhodopsins

Target-dependent structural changes accompanying long-term synaptic facilitation in Aplysia neurons.

The mechanisms underlying structural changes that accompany learning and memory have been difficult to investigate in the intact nervous system. In order to make these changes more accessible for experimental analysis, dissociated cell culture and low-light-level video microscopy were used to examine Aplysia sensory neurons in the presence or absence of their target cells. Repeated applications of serotonin, a facilitating transmitter important in behavioral dishabituation and sensitization, produced growth of the sensory neurons that paralleled the long-term enhancement of synaptic strength. This growth required the presence of the postsynaptic motor neuron. Thus, both the structural changes and the synaptic facilitation of Aplysia sensorimotor synapses accompanying long-term behavioral sensitization can be produced in vitro by applying a single facilitating transmitter repeatedly. These structural changes depend on an interaction of the presynaptic neuron with an appropriate postsynaptic target.

Animals

Structural changes vary along individual arterioles in deoxycorticosterone acetate hypertensive rats.

The variability of structural changes along individual arterioles in deoxycorticosterone acetate (DOCA) hypertensive rats was measured by coefficients of variation of: (a) serial lumen diameters along microfil casts of individual mesenteric arterioles; and (b) wall and lumen indices in serial histological cross-sections along individual renal arterioles. The mean lumen diameter of third-order mesenteric arterioles decreased with increasing duration of hypertension. There was increased variability of lumen diameter along lengths of DOCA arterioles, the coefficient of variation at 10 weeks DOCA treatment being 20.2 +/- 0.6% compared to 9.2 +/- 0.2% in controls (P less than 0.001). Medial area to internal elastic lamina (IEL) radius ratio of renal arterioles was increased in DOCA rats compared with control rats (P less than 0.025) and its variability along individual arterioles expressed as the coefficient of variation was 31.70 +/- 3.87% in DOCA rats compared with 15.29 +/- 1.72% in controls (P less than 0.005). The observed increase in variability of lumen diameter and medial area along short lengths of individual arterioles in DOCA hypertensive rats indicates that hypertensive structural changes are probably not directly related to local blood pressure. We suggest that irregular functional vasoconstriction in hypertensive rats could account for this distribution of structural changes.

Animals

UV-induced structural changes in chromatin.

UV-induced structural alterations of chromatin were studied by means of CD, electron microscopic, and gel electrophoretic measurements. The results indicate that chromatin undergoes serious structural changes after irradiation even at very low fluences. In the low fluence range the structural transitions from the higher ordered chromatin structure to the unfolded state occur without detectable changes in the content of histone H1 and of the core histones. Histone H1 disappears only at fluences above 10 kJ/m2. Furthermore, DNA in chromatin is much more sensitive against UV-irradiation and shows a higher degree of strand scission relative to free DNA. While fragmentation in free DNA occurs at fluences above 15 kJ/m2, it occurs even at 5.5 kJ/m2 in the case of chromatin. The biological meaning of the observed UV-induced structural alterations of chromatin is discussed.

Animals

[Functional disorders and structural changes in the liver in Amanita phalloides poisoning].

The liver functional disorders and structural changes were studied in 17 patients (children 6, adults 11, 4 to 70 years of age) with phalloidine intoxication. The clinical course of this severe and lethal exogenic intoxication, its characteristic clinical and laboratory features are discussed in relation to the morphological changes of the liver. The structural changes are similar in all patients independently of their age and the time of death. They are presented by fatty degeneration, acute toxic liver dystrophy and centrilobular necroses. These changes are produced by the specific action of the phalloidine toxins on the liver.

Adolescent

Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W.

High-strength bioactive glass-ceramic A-W was soaked in various acellular aqueous solutions different in ion concentrations and pH. After soaking for 7 and 30 days, surface structural changes of the glass-ceramic were investigated by means of Fourier transform infrared reflection spectroscopy, thin-film x-ray diffraction, and scanning electronmicroscopic observations, in comparison with in vivo surface structural changes. So-called Tris buffer solution, pure water buffered with trishydroxymethyl-aminomethane, which had been used by various workers as a "simulated body fluid," did not reproduce the in vivo surface structural changes, i.e., apatite formation on the surface. A solution, ion concentrations and pH of which are almost equal to those of the human blood plasma--i.e., Na+ 142.0, K+ 5.0, Mg2+ 1.5, Ca2+ 2.5, Cl- 148.8, HCO3- 4.2 and PO4(2-) 1.0 mM and buffered at pH 7.25 with the trishydroxymethyl-aminomethane--most precisely reproduced in vivo surface structure change. This shows that careful selection of simulated body fluid is required for in vitro experiments. The results also support the concept that the apatite phase on the surface of glass-ceramic A-W is formed by a chemical reaction of the glass-ceramic with the Ca2+, HPO4(2-), and OH- ions in the body fluid.

Biocompatible Materials

Structural changes in glomeruli and proteinuria in streptozotocin diabetic rats.

In streptozotocin induced diabetes in rats, excretion of urinary protein fractions were studied in relation to structural changes in the renal glomeruli, using light and transmission electron microscopy. After six weeks of induced diabetes only beta 1 and beta 2 plasma globulins were significantly elevated. The amount of excreted proteins and degree of glomerular changes were not proportional. In the initial stages (1-2 weeks) glomerular structural changes were very mild and were accompanied by significantly elevated proteinuria. This progressed (4-8 weeks) to moderate to prominent structural changes with intermittent proteinuria except for the fractions beta 1 & beta 2 which were elevated throughout the duration of the experiment. The amount of proteinuria was not proportional to changes in the plasma protein levels. The following conclusions may be made: 1) The mild early glomerular abnormalities seem to be mainly due to acute metabolic disturbances. 2) An early indication of diabetic nephropathy is provided not only by albuminuria, but may also be an elevated excretion of beta-globulin fractions. 3) Decrease of albuminuria in the later stages of diabetes may be related to the deposition of albumin as a basement membrane-like material in the mesangium.

Animals

19F NMR studies of the D-galactose chemosensory receptor. 2. Ca(II) binding yields a local structural change.

The Escherichia coli D-galactose and D-glucose receptor possesses a Ca(II)-binding site closely related in structure and metal-binding characteristics to the eukaryotic EF-hand sites. Only the structure of the Ca(II)-occupied site is known. To investigate the structural change triggered by Ca(II) and Sr(II) binding, we have used 19F NMR to probe five 5-fluorotryptophan (5F-Trp) and seven 3-fluorophenylalanine (3F-Phe) positions in the structure, extending the approach described in the preceding article. Of particular interest were two 5F-Trp residues near the N terminus of the Ca(II) site at positions 127 and 133. Substitution of the larger Sr(II) for Ca(II) triggered 19F NMR frequency shifts of the 5F-Trp127 and -133 resonances, indicating a detectable structural change in the Ca(II) site. In contrast, the three 5F-Trp resonances from distant regions of the structure exhibited no detectable frequency shifts. When the metal was removed from the Ca(II) site, the 5F-Trp127 and -133 frequencies shifted to a new value similar to that observed for free 5F-Trp in aqueous solvent, and this new frequency was a function of the H2O to D2O ratio, indicating that the residues had become solvent exposed. Metal removal yielded small or undetectable frequency shifts for the three distant 5F-Trp resonances and for four of the five resolved 3F-Phe resonances. The allosteric coupling of the metal and sugar binding sites was observed to be slight: depletion of metal ions was observed to reduce the D-galactose affinity of the receptor by 2-fold. Together the results indicate that the structural changes in the Ca(II) site are primarily localized in the region of the site. Removal of the metal ion from the site exposes the nearby 5F-Trp127 and -133 residues to the solvent, suggesting that the empty site has a more open structure.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcium

[Effect of structural changes in thyroxine-binding globulin on its biological activity and immunochemical properties].

Using spectroscopic, electrophoretic and microcalorimetric techniques, the changes in the spatial structure of human thyroxine-binding globulin (TBG) induced by exposure of protein solutions to high temperatures (45-90 degrees C) and low pH (2.5-6.0) were studied. Simultaneously the biological activity and immunoreactivity of TBG samples were measured. The structural changes were manifested at 52 degrees C or at pH 4.0 and were then aggravated with a rise in temperature or a decrease of pH. The circular dichroism spectra showed that the molecular ellipticity had a maximum decrease (by 10%) at 218-222 nm. In fluorescence spectra excitable at 280 nm the band half-width increased by 4-6 nm; their intensity decreased by 30-40%, whereas the position of the maxima did not change significantly. After addition of an equimolar amount of thyroxine to inactivated TBG the protein fluorescence was quenched by 25-40%. The electrophoregrams of treated preparations contained additional protein bands possessing no biological activity, whose mobility was less than that of native TBG. Microcalorimetric assays of native TBG revealed a thermoabsorption peak with a maximum at 62.5 degrees C and a half-width of 7.1 degrees C. The thermodynamic parameters of melting of TBG spatial structure were consistent with a model of a two-domain structure of the molecule. The biological activity and immunoreactivity of TBG showed a coordinated decrease with a rise in the degree of protein denaturation, However, the formation of TBG complex with antibodies did not screen the thyroxine-binding center of TBG and did not alter its affinity. Possible mechanisms of structural transition of TBG and its effect on the biological properties of TBG are discussed.

Binding Sites, Antibody

[Study of structural changes of contractile muscle proteins with the aid of polarization ultraviolet fluorescence microscopy. 1. Conformational changes of F-actin in the muscle fiber caused by ATP and its analogs].

Increase of anisotropy of F-actin fluorescence of balanus and rabbit muscle fibers under the influence of ATP, AMP and pyrophosphate in EGTA presence was detected by means of the polarized ultraviolet (UV) fluorescent microscopy methods. The fluorescence anisotropy changes are assumed to be associated with the conformational changes in the actin. ATP cause more noticeable changes of actin structure, than pyrophosphate and AMP. The conformational changes in the actin of balanus and rabbit muscle fibres were similar. ATP and its analogs induced also decrease of UV fluorescence anisotropy of A-band which appears to be associated with conformational changes in myosin. It was siggested that the changes in fluorescence of anisotropy of A-bands are due to structural changes in both HMM and LMM parts of myosin molecule.

Actins

Rate of quaternary structure change in hemoglobin measured by modulated excitation.

Using a novel technique of modulated photo-dissociation of carbon monoxide from hemoglobin, we have obtained the rates for conversion between the two quaternary states, R, and T, at 3-fold ligation. Our measurements at pH 7 and 22 degrees give rates of 780 +/- 40 sec-1 for going from R to T, and 2500 +/- 200 sec-1 from T to R. This yields an equilibrium constant of 0.31 +/- 0.04, which is in good agreement with previous estimates. The degree of agreement between this equilibrium constant and that predicted from the allosteric model provides a new, quantitative test of the allosteric description. A sequential model for the change in structure was found incompatible with the data, even if kinetic subunit inequivalence was assumed. The technique described here is quite general and can be used as long as the system under investigation can be repetitively excited in a regime in which it responds linearly to the excitation.

Allosteric Regulation

Sequence of structural changes and elastin peptide release during vascular remodelling in sheep with chronic pulmonary hypertension induced by air embolization.

The progression of structural changes in the pulmonary arterial bed were followed in a model of chronic pulmonary hypertension. Chronically instrumented awake sheep received continuous air embolization for 0 (controls), 1, 4, 8, or 12 days (n = 5-6/group). After the period of embolization, the lungs were removed, the pulmonary arteries were distended with barium-gelatin, and the lungs were fixed via the airways with formal-saline. Quantitative techniques were applied to sections from random blocks from the lungs of each animal. One day of embolization resulted in granulocyte sequestration in the lung interstitium and in small vessels; additionally, intraalveolar and perivascular edema was present. By 4 days, increased medial thickness, appearance of muscle in smaller arteries than normal (e.g., muscular arteries at alveolar duct level: control = 1.2 +/- 1.2%; day 4 = 22.7 +/- 7.7) and reduction in number of barium-filled intraacinar arteries was found. The arterial changes progressed in severity to day 8 and were similar at day 12. Since arterial remodelling involves increased elastin deposition, the concentration of elastin peptides was measured in lung lymph. Increased flux of elastin peptides was apparent from day 2 of embolization and continued to increase to a level 20 x baseline by day 12 (baseline 351 +/- 86 micrograms/15 min; day 12 = 6338 +/- 2999). Comparison of the onset of the structural changes with previous findings shows that the arterial remodelling parallels the onset of sustained pulmonary hypertension. The increase in lung-lymph elastin peptides by day 2 provides evidence that vascular remodelling is initiated before day 4 of embolization. The early sequestration of granulocytes and appearance of edema suggest that these may be part of the trigger to the development of the structural changes.

Angiography

Structural change in the rat hindlimb during deoxycorticosterone acetate hypertension; its reversibility and prevention.

This study measured the time course of the development and reversal of structural change in resistance vessels during deoxycorticosterone acetate (DOCA) hypertension and after cessation of DOCA in Wistar rats by hindquarter perfusion. The relationship of structural change to blood pressure was further assessed by preventing hypertension during DOCA treatment with hydralazine. Blood pressure rose progressively during DOCA treatment reaching 198.6 +/- 2.0 (s.e.) mmHg at 10 weeks. Five weeks after the cessation of DOCA, when it had been given for 2 weeks, hypertension reversed completely but after 4, 8 and 10 weeks of treatment, post-DOCA reversal of hypertension was only partial. Hindquarter perfusion pressure at maximum vasodilatation and maximum vasoconstriction increased with increasing duration of DOCA treatment and reversed 5 weeks post-DOCA to a similar degree to the blood pressure with only partial reversal of both perfusion pressures and hypertension when DOCA had been given for 8 and 10 weeks. Hydralazine did not completely prevent heart hypertrophy in the DOCA rats and caused some cardiac hypertrophy in the control ('vehicle' only) rats, although it both prevented hypertension and evidence of vascular structural change in DOCA rats.

Animals

[Dimethylaminochalcone, an indicator of the structural changes in the cellular envelop of E. coli under the action of Ca2+ cations and tris buffer].

An attempt was made to detect possible structural changes in E. coli cell envelope induced by Ca2+ treatment with the help of an uncharged fluorescent probe 4-dimethylaminochalcon (DMC). The effects of the treatment with tris buffer (0.01 M) at 0 degrees C and other agents (Mg2+ and EDTA) were also studied for the purpose of comparison. It is shown that Ca2+ treatment of E. coli cells results in structural changes in the cell envelope surface, whick differ from those induced by tris-buffer at 0 degrees C, Mg2+ and EDTA. DMC can be used successfully as a suitable probe for monitoring structural changes in biomembranes.

Calcium

Active site mutant Glu-43----Asp in staphylococcal nuclease displays nonlocal structural changes.

The crystal structure of the Glu-43----Asp mutant of staphylococcal nuclease complexed with Ca2+ and the inhibitor thymidine 3',5'-bisphosphate (pdTp) has been determined and refined by restrained least-squares methods to a conventional crystallographic R value of 0.174 at a resolution of 1.74 A. Throughout most of the structure, the conformation of the backbone atoms of the mutant is similar to that of the wild-type protein; however, the seemingly conservative mutation Glu----Asp has significantly perturbed the structure of a loop adjacent to the active site, as well as giving rise to looser binding of the essential calcium ion and to a less extensive network of bound water molecules in the active site. Crystal contacts that extend into the active site have also been altered by this amino acid substitution. The changes caused by this mutation are considerably more drastic than would have been predicted and should serve as caveats to those who would draw conclusions about structure-function relationships on the basis of site-directed mutagenesis experiments in the absence of structural data.

Binding Sites

Structural changes in kidneys of patients with oliguric extracapillary glomerulonephritis during immunosuppressive therapy.

Structural changes in kidney biopsies were investigated from five patients with primary oliguric extracapillary glomerulonephritis in whom the renal function was adequately maintained during extended combined immunosuppressive treatment. The most important structural change was a pronounced decrease in the number of crescents. Reduction in numbers of crescents in the late biopsies was significantly greater than the increase in the number of hyalinized glomeruli. Tubular parenchyma showed only slight diffuse atrophy, and a moderate interstitial fibrosis was always present during the latter stages of treatment. Disappearance of crescents in the glomeruli was not accompanied by disappearance of immunoglobulins. Successfull immunosuppressive treatment of extracapillary glomerulonephritis causes the disappearance of structural characteristics of the kidney that are diagnostic for this disease.

Adult

Cardiovascular structural changes in hypertension: possible regression during long-term antihypertensive treatment.

Arterial hypertension is often complicated by left ventricular hypertrophy (LVH) and by vascular structural changes resulting in decreased proximal and distal compliance. LVH is an adverse prognostic factor because it increases the incidence of sudden death and other morbid events related to ischaemic heart disease, whereas vascular alterations may induce target organ damage and contribute to the maintenance of elevated blood pressure values. Thus, antihypertensive treatment must both reduce blood pressure and halt regression of cardiovascular structural changes. A review of the literature suggests long-term use of calcium antagonists, ACE inhibitors, and beta-blockers may revert LVH. We have found that such long-term drug use not only reduces blood pressure and LVH, but also ventricular arrhythmias that are often related to cardiac hypertrophy; however, diuretics do not have this beneficial effect. As regards vascular disturbances ACE inhibitors partially revert these alterations, whereas beta-blockers do not. Further studies are needed to determine whether there are regional differences in the regression of cardiovascular structural changes or whether different antihypertensive drugs have different effects on these changes.

Animals