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Biomedical subjects

A F Protas

Publications and source records attributed to A F Protas.

At least 19 recordsLinked to original sources

[Pectin-containing products in the dietary nutrition of subjects exposed to ionizing radiation as a result of the accident at the Chernobyl Atomic Electric Power Station].

Effect of natural and enriched with pectin tanned fruits on radiation-induced metabolic disorders was studied in persons subjected to radiation due to Chernobyl accident. It was shown that products in question beneficially influenced blood antioxidant system as well as brought to the norm contents of triglicerides and albumins in patients with IIa and IV types of hyperlipoproteinaemia.

Accidents, Occupational↗

Intrinsic fluorescence, difference spectrophotometry and theoretical studies on tertiary structure of calf thymus histone H1.

Tyr-72 is included in the hydrophobic cleft which is formed in the histone H1 globular head. Tyr-72 is screened against polar aqueous environment and its intramolecular mobility is sharply retarded. This microenvironment causes a red shift (lambda max = 279 nm) and a sharpening of the longer wavelength shoulder of absorption spectra, a high fluoresence anisotropy value (A = 0,11), high quantum yield of fluoresence (approximately 0.2) and a decrease of the Stern-Volmer Constant during quenching of histone H1 fluorescence by acrylamide. It has been found that the change in the intensity of histone fluorescence at lambda excit = 265 nm, but not at lambda excit = 280 nm, is due to the changes in the quantum yield of fluorescence. The increase of fluorescence intensity at lambda excit = 280 nm depends on the changes in the quantum yield and molar extinction coefficient of histone H1 tyrosyl chromophore. The change in the ratio of fluorescence intensity exited at 280 nm (F280) to the fluorescence intensity excited at 265 nm (F265) corresponds to the change of delta epsilon 286 in difference absorption spectra. The introduction of the parameter Cf = F280/F265 allows one to go over to studying excitation spectrum shifts instead of histone absorption spectrum shifts, which is much more convenient methodologically since in this case it is possible to carry out research using lower protein concentrations and turbid solutions. The results make it possible to designate Tyr-72 of histone H1 as a special class of fluorescent tyrosyls whose properties differ from those of tyrosyls of other tryptophane-free proteins: RNAase, insulin, core histones--H2A, H2B, H3, H4 and some others.

Amino Acid Sequence↗

[Accessibility of histone oligomers to the action of trypsin in a solution or in chromatin with different degrees of compactness].

The accessibility to trypsin of "core" histones within the dimer (H2A-H2B), tetramer (H3-H4)2, octamer (H2A-H2B-H3-H4)2 and in chromatin was studied. It was shown that the hydrolysis of histones H2A and H2B within the dimer and octamer occurs in essentially the same way. The tetramer (H2-H4)2 becomes more compact with an increase in the ionic strength. Some of the tetramer (H3-H4)2 sites within the octamer are protected against trypsin. It was demonstrated that in terms of the histone accessibility to trypsin chromatin can exist in three states, i.e., tightly packed (in the presence of histone H1 and bivalent cations), intermediate (in the absence of histone H1 or bivalent cations) and folded (in the absence of histone H1 and bivalent cations). The folding of histones in neither of these chromatin states coincides with that within the octamer in 2M NaCl.

Amino Acid Sequence↗

The structure of the histone dimer H2A-H2B studied by spectroscopy.

The spatial organization of the histone dimer (H2A-H2B) in 0.1-1.0 M NaCl is characterized by the inclusion of 38% of the residues in alpha-helical segments, an average fluorescence quantum yield of 0.085 +/- 0.003, a red shift of absorption (lambda max = 278 +/- 0.5 nm) and fluorescent spectra (lambda max = 304.4 +/- 0.3 nm) as compared to the respective spectra of free tyrosine. The changing of position lambda max of tyrosine fluorescence of histones during denaturation has been shown. The dimer (H2A-H2B) exhibited a conformational change in a transition centred at about 0.5 M NaCl. The dimer denaturation takes place at higher urea concentrations as the ionic strength of the medium increases. The quenching of tyrosine fluorescence of the histone dimer (H2A-H2B) was performed using the ions I-, Cs+ and acrylamide. It has been shown that, at a concentration of NaCl over 0.5 M, dimer compactization takes place, as well as the screening of some part of tyrosyls for te against the quenching effect of Cs+. Our experiments made it possible to identify three zones in the composition of the histone dimer (H2A-H2B) and determine the number (ni) and fluorescence quantum yields (qi) of tyrosyls included in the following specific zones: zone I, n1 = 2, q1 = 0.136; zone II, n2 = 3; q2 = 0.08; zone III, n3 = 3; q3 = 0.055.

Animals↗

[Native and trypsin-treated histone oligomers--tetramer (H3-H4)2 and dimer H2a-h2b].

The native oligomers of histones isolated from calf thymus nuclear chromatin were investigated. After mild treatment with trypsin, the tetramer, (H3-H4)2, has a molecular weight of 36 000, whereas Mr of the dimer, H2a-H2b, is equal to 25 000. Intact oligomers have Mr of 55 000 (tetramer) and 33 000 (dimer). Analysis of the fluorescence intensity changes indicates that the native tetramer can exist in three, while the dimer in two conformational states. The (H2a-H2b) dimer persists, but the (H3-H4)2 tetramer does not persist these transitions after proteolytic degradation. The trypsin-treated dimer H2a-H2b is highly labile and readily aggregates, while the tetramer (H3-H4)2 loses its aggregation capacity. It is assumed that the conformational features observed during the aggregation of histone oligomers may play a role in the assembly and structural transitions in nucleosomes and chromatin.

Animals↗

[Structure and properties of the cell nucleus chromatin in the brain of rats exposed to gamma-radiation].

Exposure of rats to radiation in a dose of 1 Gy changes sensitivity of chromatin in the cerebral cortex cells to the action of DNAase 1, which promotes an increase of the DNA hydrolysis level and content of dissolved chromatin fractions. A day after irradiation the chromatin structure restores only partially and then (7-30 days after irradiation) it passes into a new, less compact state. The irradiation changes the chromatin ability to aggregation in the presence of Mg2+ and spermidine.

Animals↗

[Effect of low doses of external and internal ionizing radiation on proteinases of cells in the rat cerebral cortex of rats].

Single external gamma-irradiation in a dose of 0.5-2 Gy as well as the long-term (30 days) internal irradiation caused by the everyday influx of Cs-137 and Sr-85 isotopes to the organism have been studied for their effect on the activity and properties of histone-specific proteinase from the nuclei of the rat brain cortex cells. It is found out that external irradiation induces a dose-dependent increase of the activity during the first 24 hours after irradiation followed by its decrease 7-30 days later. Internal irradiation induces a decrease of the enzyme activity at the 30th day as well. Certain specificity of the studied indices depending on the type of irradiation has been also observed.

Animals↗

[Isoenzyme spectrum of lactate dehydrogenase, malate dehydrogenase, esterase and acid phosphatase of rat brain cells at different times after external 1 Gy gamma irradiation].

The influence of external single gamma-irradiation with a dose of 1 Gy on the isoenzyme composition of lactate dehydrogenase, malate dehydrogenase, esterase and acid phosphatase in the cytoplasm of rat brain cells has been investigated. Irradiation was shown to cause differently directed changes in the ratio of the isoenzymes under study at different times after exposure. The isoenzyme spectrum of lactate dehydrogenase and malate dehydrogenase was shown to be normalized on day 30 after irradiation, whereas the isoform composition of esterase and acid phosphatase was not stabilized at that time.

Acid Phosphatase↗

[The effect of low doses of external gamma irradiation on the chromatin structure and activity of the histone-specific proteinases of rat brain cells].

Irradiation of rats with doses of 0.5 to 2 Gy was shown to cause dose-dependent changes in the sensitivity of brain cell chromatin to the effect of DNAase I that were manifested by the increased level of DNA hydrolysis and a high content of the chromatin soluble fractions. The chromatin structure was only partially restored 24 h after irradiation. Changes in the chromatin structure were accompanied by the increase in the histone-specific proteinase activity.

Animals↗

[Isolation of a histone-specific proteinase from brain cell nuclei of rats].

A method for isolating histone proteinase of rat brain chromatin is described, including ammonium sulphate fractionation gel filtration on sefacryl 5200, ion exchange chromatography on mono S and affinity chromatography with benzamidine sefarose. The enzyme molecular weight equals 25 kDa. It is purified 15621 times in comparison with initial nuclear extract.

Animals↗

[Kinetic characteristics of the pyruvate transport system in the wheat chloroplast envelope].

Kinetics of pyruvate transport through the envelope chloroplast vesicles has been studied. For wheat cultivar Bezostaya-1 Km is 26 mM, Vmax--33 Mmol/l h per 1 mg of protein, Hill's coefficient--0.56 and the coefficient of temperature inactivation at 40 degrees C is 0.045 min-1. 7 mM Mg or Ca ions for optimal activity of the system are needed. Chloroplast treatment with trypsin increases the pyruvate transport intensity. The simple analytical method is suggested for pyruvate determination at the concentration of 10-150 micrograms/ml.

Biological Transport↗

[Isolation and properties of the Ca2+, phospholipid-dependent protein kinase from the substantia grisea of the rat brain in the early stage of exposure to ionizing radiation].

Ca2+, phospholipid-dependent proteinkinase was isolated from intact and exposed (1 h following whole body X-irradiation with a dose of 0.21 C/kg) gray substance of rat brain, and the dependence of this enzyme on pH and temperature, and substrate specificity were studied. Changes were shown to occur in some Ca2+, phospholipid-dependent proteinkinase properties under the effect of X-radiation while the substrate specificity remained unchanged.

Animals↗

[Interaction of histone H1 molecules in a solution].

Molecules of histones H1 isolated from the calf thymus, carp testicles and spermatozoa as well as trypsin-stable fragments of these proteins have been studied from the standpoint of their structure and interaction using methods of differential spectrophotometry, gel filtration and turbidimetry. The globular structure of histone H1 of the calf thymus is formed with an increase in the ionic strength of the medium and it is eluted as dimer with gel chromatography. With a considerable local increase of ionic strength (by addition of NaCl crystals) molecules of histones H1 form high-molecular aggregates from all the studied tissues. This aggregation is a result of interaction of globular trypsin-stable sites. Molecules of histone H1 from carp testicles and spermatozoa as well as their trypsin-stable fragments revealed no differences in the ability to form dimers and aggregates.

Animals↗

[Spatial organization of the (H3-H4-H2A-H2B)2 histone octamer].

Structure of the (H2A-H2B-H3-H4)2 histone octamer isolated from calf thymus chromatin at ionic strength 0.1 to 4.0 M NaCl, pH 7.6, was studied spectrofluorometrically. Sensitivity of lambda max tyrosine fluorescence position to structural changes of histone oligomers and to the processes of their association was shown. It were detect two ranges of cooperative changes in histone optical parameters at 0.6-1.4 M NaCl (transition I) and at 2.4-3.4 M NaCl (transition II): Transition I corresponds to the formation of equilibrium system (hexamer) + (dimer) in equilibrium octamer. Transition II corresponds to the structural changes of the histone octamer. Thus, fluorescence anisotropy increases, lambda max for fluorescence spectrum is shifted to the longer wavelengths, contributions of two components to fluorescence decay change, a fraction of fluorescence accessible to the quenching by I- decreases. Histone octamer formation is characterized by making specific contacts between the (H2A-H2B) dimer and (H3-H4)2 tetramer. These contacts are realized at gradual changing of ionic strengths (by dialysis). In the case of abrupt local changes of the environment the process is irreversibly shifted to formation of unspecific high molecular aggregates. The important function role for energetically degenerated states of histone oligomers, energy barriers between which can be overcome by changing total conditions of histone microenvironment in chromatin is discussed.

Animals↗

[Two structural forms of histone octamer].

It has been found that histone octamer of calf thymus (H2A--H2B--H3--H4)2 can exist in two structural states--"loose" (2M NaCl) and "compact" one (4M NaCl). The compact state of the octamer is characterized by screening of part of tyrosyls for quenching effect of ions I-, longer relaxation time of tyrosyls, greater stability of histone H3 towards trypsinolysis, complete absence of interactions between histone H3 SH-groups and parachlormercuribenzoate.

Animals↗

[Effect of ionic strength of the medium on the structure and aggregation of histone H1 from the calf thymus].

In the region of 50 mM NaCl histone HI has the structure with a great number of binding sites with fluorescent probe 1.8-ANS as compared to the structure formed in solution of 0.6-1.0 M NaCl. These sites, however, have a lower constant of binding with the probe and are characterized by a higher surrounding polarity. At local significant increase of the ionic strength histone HI molecules form stable oligomers having hydrophobic cavities. A conclusion is made about the importance of cationic envelope formed by N- and C-ends around the globular "head", for manifesting effective interactions between several molecules of histone HI.

Anilino Naphthalenesulfonates↗

[Characteristics of the tertiary structure of histone H1 from the calf thymus].

By optical methods it has been previously shown that the globular "head" of histone H1 forms a hydrophobic cavity containing Tyr72. The latter is screened from the polar water surrounding and its intramolecular mobility is drastically hindered. As a consequence of the alteration in the micromilieu are a long wave shift (lambda max = 279,5 nm) and a more pronounced longwave absorption spectra, higher anisotropy (A = 0,11), augmented quantum yield of fluorescence (approximately 0,2) and a decrease of the Stern-Volmer constant for Hl at fluorescence quenching by acrylamide. It was found that changes in fluorescence intensity of histones are connected with alterations in the quantum yield of fluorescence at lambda exc = = 265 nm, but not at lambda exc = 280 nm. The changes in fluorescence intensity at light excitation 280 nm (F280) and 265 nm (F265) are in good accordance with shift delta E286 in differential absorption spectra. Introduction of parameter Cf = F280/F265 allows to study shifts of excitation spectra instead of shifts in absorption spectra of histones. This method has certain advantages, since it permits investigations with lower protein concentrations and in turbid solutions. The data obtained allow to draw out Tyr72 of histone Hl into a special class of fluorescent-tyrosyls, that differ in properties from those of other tryptophandevoided proteins: RNAse, insulin and core-histones H2A, H2B, H3 and H4.

Animals↗