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Fourier transform infrared spectroscopic study of Ca2+ and membrane-induced secondary structural changes in bovine prothrombin and prothrombin fragment 1.

Fourier transform infrared (FTIR) spectroscopy was used to monitor secondary structural changes associated with binding of bovine prothrombin and prothrombin fragment 1 to acidic lipid membranes. Prothrombin and prothrombin fragment 1 were examined under four different conditions: in the presence of (a) Na2EDTA, (b) 5 mM CaCl2, and in the presence of CaCl2 plus membranes containing 1-palmitoyl-2-oleoyl-3-sn-phosphatidylcholine (POPC) in combination with either (c) bovine brain phosphatidyl-serine (bovPS) or (d) 1,2-dioleoyl-phosphatidylglycerol (DOPG). The widely reported Ca(2+)-induced conformational change in bovine prothrombin fragment 1 was properly detected by our procedures, although Ca(2+)-induced changes in whole prothrombin spectra were too small to be reliably interpreted. Binding of prothrombin in the presence of Ca2+ to procoagulant POPC/bovPS small unilamellar vesicles produced an increase in ordered secondary structures (2% and 3% increases in alpha-helix and beta-sheet, respectively) and a decrease of random structure (5%) as revealed by spectral analysis on both the original and Fourier-self-deconvolved data and by difference spectroscopy with the undeconvolved spectra. Binding to POPC/DOPG membranes, which are less active as procoagulant membranes, produced no detectable changes in secondary structure. In addition, no change in prothrombin fragment 1 secondary structure was detectable upon binding to either POPC/bovPS or POPC/DOPG membranes. This indicates that a membrane-induced conformational change occurs in prothrombin in the nonmembrane-binding portion of the molecule, part of which is activated to form thrombin, rather than in the membrane-binding fragment 1 region. The possible significance of this conformational change is discussed in terms of differences between the procoagulant activities of different acidic lipid membranes.

Animals

[Kinetics of electron transport, proton transfer and photophosphorylation in chloroplasts and their relation to temperature-induced structural changes in the thylakoid membrane].

Effects of various temperatures on the rates of electron transport between two photosystems, the light-induced uptake of protons, kinetics of proton efflux from the chloroplasts in the dark and photophosphorylation were studied in isolated chloroplasts. There are correlations between the physical state of thylakoid membrane and the rates of electron- and proton transport processes. The temperature dependence of "structural" parameter (fluidity of lipids in membrane) as well as the rates of electron- and proton transport processes reveal the breaks under the same temperatures. Stimulation of photophosphorylation by temperature increasing correlates with the heat activation of chloroplasts latent ATPase due to thermoinduced structural changes in the heat activation of chloroplasts latent ATPase due to thermoinduced structural changes in the protein part of CF0-CF1 complex. The rate of photophosphorylation also correlates with the physical state of membrane lipids. Thermoinduced "melting" of the thylakoid membrane inhibits the ATP formation because of a decrease in photosystem 2 photochemical activity and stimulation of membrane conductivity for protons.

Chloroplasts

Compactness of protein molten globules: temperature-induced structural changes of the apomyoglobin folding intermediate.

Apomyoglobin undergoes a two-step unfolding transition when the pH is lowered from 6 to 2. The partly folded intermediate (I) state at pH 4 and low ionic strength has properties of a molten globule. We have studied structural features of this state, its compactness, content of secondary structure, and specific packing of aromatic side chains, using dynamic light scattering, and small-angle X-ray scattering and far- and near-ultraviolet circular dichroism spectroscopy. Particular attention was paid to temperature-dependent structural changes. The results are discussed with reference to the native-like (N) state and the highly unfolded (U) state. It turned out that the I-state is most compact near 30 degrees C, having a Stokes radius 20% larger and a radius of gyration 30% larger than those of the N-state. Both cooling and heating relative to 30 degrees C led to an expansion of the molecule, but the structural changes at low and high temperatures were of a different kind. At temperatures above 40 degrees C non co-operative melting of structural elements was observed, while the secondary structure was essentially retained on cooling. The results are discussed in context with theoretical predictions of the compactness and the stability of apomyoglobin by Alonso et al. [Alonso, D. O. V., Dill, K. A., and Stigter, D. (1991) Biopolymers 31:1631-1649]. Comparing the I-state of apomyoglobin with the molten globules of alpha-lactalbumin and cytochrome c, we found that the compactness of the molten globule states of the three proteins decreases in the order alpha-lactalbumin > apocytochrome c > apomyoglobin.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Structural changes in lungs of magnesium-deficient weanling rats dying spontaneously or after spontaneous recovery from the seizure-shock episode. Possible methods for sudden infant death syndromes.

A light and electron microscopic study of Mg-deficient weanling rats showed structural changes of the lungs associated with the audiogenic seizure-shock episode, and with sudden, spontaneous death or spontaneous recovery after the shock episode. Pathogen-free weanling males were fed a Mg-deficient (Mg-0) or Mg-sufficient (Mg-100) diet and were raised in a gnotobiotic environment. Mg-100 rats (n = 16), unstressed or stressed with noise or strychnine, showed normal lungs. Mg-0 rats (n = 20) experienced audiogenic seizure-shock, followed by hyperventilation with tonic-clonic hyperextension of the back and extremities. The lungs of Mg-0 rats sacrificed during shock showed marked hemorrhage, including petechiae; edema; and atelectasis. Eight that died after a post-shock period of hyperventilation and hyperextension of the spine showed partial recovery of the pulmonary lesion; they showed well-expanded lungs, pleural petechiae, persistent congestion, with mild to moderate pathology. Mg-0 rats killed for study 2 days after the seizure-shock episode showed few small areas of residual lung pathology. Ultrastructural changes after Mg-O shock included aggregated platelets, leukocytes, and occasional reticulocytes in congested capillaries. Surfactant was disrupted during Mg-0 seizure-shock, but a layer closely applied to the surface of the epithelium was evident 2 days after shock. Mg-0 rats dying spontaneously showed nonspecific structural changes of the lung similar to changes reported in the sudden infant death syndrome (SIDS).

Acoustic Stimulation

Structural changes of Toxoplasma gondii bradyzoites and cysts following therapy with sulfamethoxypyrazine-pyrimethamine: studies by light and electron microscopy. Consequences for chemotherapy.

Mastomys natalensis chronically infected with Toxoplasma gondii strain ALT over two months were treated with sulfamethoxypyrazine-pyrimethamine for 10 and 25 days. 72 hours after discontinuation of therapy the animals were sacrificed. The brains were removed and, following corresponding preparation, studied for the presence of the parasite and structural changes of cysts by light and transmission electron microscopy. More or less pronounced structural changes could be found in cyst walls, bradyzoites, and in particular in the endodyogeny stages. The degree of damage proved to be proportional to the intensity of the bradyzoite metabolism. The combination of drugs used was capable of passing the cyst membrane as long as the bradyzoites maintained their metabolism irrespective of its intensity. In cysts with a largely dormant metabolism that had been subject to therapy, no micromorphological differences of the ultrastructure could be recognized when compared with untreated controls of identical age; these cysts could not be influenced by treatment.

Animals

Water structural changes at the proton uptake site (the Thr46-Asp96 domain) in the L intermediate of bacteriorhodopsin.

Fourier transform infrared spectra of the L intermediate of light-adapted bacteriorhodopsin were examined for recombinant proteins with amino acid substitutions at Thr46 and Asp96. Two O-H stretching vibrational bands of water, at 3607 and 3577 cm-1, change into stronger H-bonding states in L of the wild type. Thr46-->Val substitution abolished these bands in spite of the fact that [3-18O]threonine-labeling did not shift them, indicating that they correspond to coordination of the water with Thr46. The two water bands were restored, although with changed frequencies, by an additional Asp96-->Asn substitution in Thr46-->Val/Asp96-->Asn. A single Asp96-->Asn substitution abolished the 3607 cm-1 band. Thus, Asp96 also takes part in structural changes in water. The perturbations of these water molecules in the L intermediate displayed a weak correlation with the ratio of intensity change in the two vibrational bands of the Schiff base mode at 1312 and 1301 cm-1 and the rate for the deprotonation of the Schiff base at the L-to-M reaction of the photocycle. We find, therefore, that the water molecules in the cytoplasmic Asp96-Thr46 domain, which comprises the site of proton uptake after formation of the M intermediate, undergo structural changes in the L intermediate already. These changes are transmitted to the extracellular domain and affect interaction of the Schiff base with Asp85, that is far removed from this region.

Aspartic Acid

Proton magnetic resonance study of p-mercuribenzoate binding and structural changes in methemoglobin.

Interaction of human adult methemoglobin with p-mercuribenzoate (pMB) was examined at 21 degrees C by monitoring the hyperfine-shifted proton nuclear magnetic resonance (NMR) spectra of several high- and low-spin derivatives. The NMR spectra show that the heme methyl proton resonances from the beta subunits in methemoglobin were selectively affected by the binding of pMB regardless of whether the heme iron was saturated with high-spin or low-spin ligand. This observation suggests that the binding of pMB to methemoglobin induces a localized tertiary structural change around the beta heme, leaving the alpha heme unaffected. The structural change of the beta subunit was correlated with an increase in the high-spin character of the beta heme iron. A model study of the azide-methemoglobin complex suggested that the increase of the high-spin character of the beta heme iron is due to a conformational change of the proximal histidine which weakens the interaction between the heme iron and the proximal base. A similar and more pronounced spectral change due to binding of pMB was observed for the isolated beta subunit. The NMR spectral change in the isolated beta subunit also suggests that the binding of pMB to methemoglobin induces a localized conformational change within the beta subunit.

Adult

Electron-transfer kinetics in photosynthetic reaction centers cooled to cryogenic temperatures in the charge-separated state: evidence for light-induced structural changes.

We have compared the electron-transfer kinetics in reaction centers (RCs) cooled in the dark with those cooled under illumination (i.e., in the charge-separated state). Large differences between the two cases were observed. We interpreted these findings in terms of light-induced structural changes. The kinetics of charge recombination D+QA-----DQA in RCs containing one quinone were modeled in terms of a distribution of donor-acceptor electron-transfer distances. For RCs cooled under illumination the distribution broadened and shifted to larger distances compared to the distribution for RCs cooled in the dark. The model accounts for the nonexponential decay observed at low temperatures [McElroy, J. D., Mauzerall, D. C., & Feher, G. (1974) Biochim. Biophys. Acta 333, 261-277; Morrison, L.E., & Loach, P.A. (1978) Photochem. Photobiol. 27, 751-757]. A possible physiological role of the structural changes is an enhanced charge stabilization. For RCs with two quinones, the recombination kinetics D+QAQB-----DQAQB were found to be strongly temperature dependent. This was interpreted in terms of temperature-dependent transitions between structural states [Agmon, N., & Hopfield, J.J. (1983) J. Chem. Phys. 78, 6947-6959]. This interpretation requires that these transitions occur at cryogenic temperatures on a time scale t greater than or approximately 10(3) s. The electron transfer from QA- to QB was found to not take place in RCs cooled in the dark (tau ABdark greater than 10(-1) s). In RCs cooled under illumination, we found tau ABlight less than 10(-3) s. We suggest the possibility that the drastic decrease in tau AB observed in RCs cooled under illumination is due to the trapping of a proton near QB-.

Bacterial Proteins

Local structural changes in tropomyosin detected by a trypsin-probe method.

Structural changes in tropomyosin from rabbit skeletal muscle were studied by the tryptic digestion method, which is an application of the quantitative enzyme-probe method recently developed by Ueno and Harrington [Ueno, H., & Harrington, W.F. (1984) J. Mol. Biol. 173, 35-61]. Effects of ionic strength, temperature, and an interchain disulfide bond at Cys-190 on the structure of tropomyosin were examined. A region of high susceptibility to trypsin was found to be localized in the middle portion of the molecule, and its susceptibility increased on lowering ionic strength and/or raising temperature. With the introduction of a disulfide bond at Cys-190, cleavage on the N-terminal side of Cys-190 was accelerated. The results suggest that skeletal muscle tropomyosin is flexible in the middle of the molecule in contrast to the flanking N- and C-terminal trypsin-resistant segments.

Animals

Structural change in muscles of the dystrophic chicken. II. Progression of the histopathology in the pectoralis muscle.

Dystrophic (D) and normal (N) chicken pectoral muscle was analysed for histopathological differences from the embryo (day 20) through to the mature adult stage. A variety of indices of structural changes were used, to express the progression quantitatively. At the embryonic stage, fibroblast numbers (but not satellite cell numbers) are increased in D. D shows fibre hypertrophy discernible from about 4 days after hatching. Other abnormalities of fibre size and shape appear in D from about 2 weeks onwards. Nuclei numbers and location change characteristically in D, compared to N, from about 4 days, and these differences subsequently become very prominent. Fibre splitting and phagocytosis become significant in D from about 2 weeks onwards and increase noticeably thereafter. The later stages in D, with gross loss of muscle fibres, are also described, in the pectoral and posterior latissimus dorsi muscles. The analyses show that some of the structural changes in D precede the discernible difference in fibre type composition which develops between D and N. The changes in the muscle used provide a basis for assessing the effects of drug treatments at various stages, including the early post-hatch period.

Age Factors

Morphometric study of structural changes in the mesenteric blood vessels of spontaneously hypertensive rats.

Structural changes of three categories of mesenteric arteries (representing elastic, muscular and arteriolar vessels) from 10- to 12-week-old and 28-week-old spontaneously hypertensive rats (SHR) were studied morphometrically at the light microscope level, and the results compared with age-matched Wistar-Kyoto normotensive rats. In 10- to 12-week-old SHR, hypertrophy of the vessel wall occurred only in the muscular and arteriolar vessels. At 28 weeks, further thickening of the vessel wall occurred in the muscular and arteriolar vessels, and the superior mesenteric artery (elastic vessel) was also thickened in the SHR. There was no evidence that the wall of the relaxed hypertrophied vessels encroached upon the lumen of the vessel. The structural basis for the increase in the vessel wall thickness varied with vessel type. In the superior mesenteric artery, increase in the media at 28 weeks of age would be consistent with hypertrophy of the smooth muscle cells. In the large muscular arteries, at 10-12 weeks of age, increase in medial mass occurred with increase in the number of the smooth muscle cell layers whereas at 28 weeks further increase in media could be due to hypertrophy of the smooth muscle cells. In the small arteriolar vessels, medial enlargement was due at all ages to an increase in the number of smooth muscle layers. Our results show that in the SHR hypertrophy of the media occurs not only in the small arteriolar vessels, but also in large elastic and muscular arteries.

Animals

G proteins (Gi, Go) in the medial temporal lobe in schizophrenia: preliminary report of a neurochemical correlate of structural change.

We have measured the amount of Gi (the inhibitory G-protein) or Go (a similar G-protein of unknown function) in 5 areas of the medial temporal lobe of control and schizophrenic brains utilizing pertussis toxin-catalyzed ADP ribosylation. The material used has previously been shown to have asymmetrical structural abnormalities of the ventricular system. The amount of Gi or Go was reduced on the left side in the hippocampus, amygdala and parahippocampal gyrus, the difference reaching significance in the hippocampus. This data is the first report of a neurochemical correlate of the structural change in the brains of patients with schizophrenia. Decreased Gi or Go in hippocampus may relate to other reported neurochemical deficits or other transmembrane signalling abnormalities. Further investigations of these indices of secondary messenger function in relation to structural changes are indicated.

Adenosine Diphosphate Ribose

Structural changes in the pollinated and unpollinated avocado stigma and style.

Structural changes in the pollinated and unpollinated avocado (Persea americana Mill) stigma and style up to 42 h after first opening of the flower were investigated using light and electron microscopy. The pollen tubes grew in the stigma secretion and intercellular substance and initial contact occurred between the plasma membrane of the male and the cuticle and stigma secretion of the female. The pollen tube wall started to develop 15 min after pollination and increased in thickness up to 24 h after pollination. By 18 h after first opening of the flower, starch had disappeared and cell wall thickenings were present in both the pollinated and unpollinated stigma and style. The wall thickenings developed more slowly in the unpollinated than in the pollinated tissue. They contained lipid and were bounded by callose. Degeneration of the cytoplasm of some of the papilla and transmitting tissue cells occurred only following the passage of the pollen tubes and may be of importance in tube nutrition. There was no degeneration in the unpollinated stigma and style and the cytoplasm did not start to lose clarity until 42 h after first opening of the flower.

Cell Wall

[Functional and structural changes in the small intestine during experimental hypercholesteremia].

Functional and structural changes that occurred in the small intestine and liver of rabbits with alimentary hypercholesterolemia have been studied. Maximal rise of peripheral blood cholesterol after a single exposure to cholesterol was coupled with an increased penetration of chylomicrons and low and very low density lipoproteins from the intestine to the circulation. The decrease of cholesterol excretion along the whole length of the small intestine was accompanied by activation of the release of high density lipoproteins into the blood outflowing from the intestine. The decay of chylomicrons in the liver was restricted during the first days of hypercholesterolemia. Cholesterol concentration in the bile was decreased. The microvessels of the small intestine demonstrated the dilatation of the postcapillary-venular component erythrocyte aggregates and capillarostases.

Animals

Reversal of cardiovascular structural changes during long-term antihypertensive therapy.

Several prospective epidemiological and clinical studies have indicated that regression of cardiovascular alterations, preferably at an early stage, is a desirable goal in the treatment of hypertension. The results of a large number of studies have indicated that many antihypertensive drugs can produce a significant regression of cardiovascular structural changes in hypertensive patients. However, it has not been established whether a complete 'normalisation' may occur. Further studies are needed to identify factors that modulate regression of cardiac and vascular smooth muscle hypertrophy. Most important, it remains to be clarified whether regression of cardiovascular structural changes significantly improves prognosis per se independently from blood pressure reduction.

Antihypertensive Agents

Cardiac and vascular structural changes in normotensive subjects with parental hypertension.

OBJECTIVE: To evaluate whether a predisposition to hypertension is associated with early cardiac and vascular alterations. SUBJECTS: Twenty-five normotensive subjects with both parents hypertensive (group 1) and 28 age- and sex-matched control subjects with both parents normotensive (group 2). METHODS: In the two groups the measurements included: clinic blood pressure; left ventricular end-diastolic diameter, septal wall thickness and posterior wall thickness (by echocardiography); minimal forearm and calf vascular resistances (i.e. resistance assessed immediately after prolonged ischaemia, which depends on arteriolar wall thickness); and baseline and postischaemic radial artery compliance-pressure curves over the systolodiastolic pressure range (by echotracking device and finger blood pressure). RESULTS: Group 1 had a slightly higher clinic blood pressure, and septal and posterior wall thickness, than group 2. Minimal forearm vascular resistance was clearly greater in group 1 than in group 2, whereas minimal calf vascular resistance was not significantly different in the two groups. Radial artery compliance was also similar in the two groups. CONCLUSIONS: Parental predisposition to hypertension is accompanied by cardiac and arteriolar structural changes qualitatively similar to those found in hypertensive patients, although arteriolar structural changes do not involve all vascular beds. Arterial compliance is not altered in this condition. Vascular changes may be determined by mechanisms other than blood pressure elevation.

Adult

[Structural changes in the brain in transient cerebral circulatory disorders detected in vivo by using computerized axial tomography and radioisotope cerebral scintigraphy].

Computer-aided axial tomography and radioisotopic (with 99mTc) scintigraphy of the brain were used for examining 54 patients with transient cerebral circulation disturbances, the clinical manifestations of which subsides within a period of less than 24 hours. In 28% of the patients, structural changes in the brain were revealed. The computer-aided tomography appeared to be more informative for their discovery, than the radioisotopic scintigraphy. On the basis of the data obtained the patients were divided into the following three groups: a) functional, i. e. having no lifetime structural changes in the brain detected at the moment of the examination (72% of all the patients), b) ischemic-infarctic one with a minor cerebral infarctions (13.5% of the patients), and c) hemorrhagic, with small-sized hemorrhagic foci in the brain (11.5% of the patients). The existence of the latter group should be regarded as a warning of dangers entailed by routine prevention and treatment of transient cerebral circulation disturbances with antiaggregants and anticoagulants. A new classification and terminology of the clinical symptoms caused by transient cerebral circulation disturbances are offered.

Cerebral Hemorrhage