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V F Makeeva

Publications and source records attributed to V F Makeeva.

14 recordsLinked to original sources

[Phosphorylation of isolated components of the troponin complex of skeletal and cardiac muscle phosphorylase kinase from bird skeletal muscles].

Pigeon and chicken skeletal muscle phosphorylase kinase purified to a nearly homogeneous state is able to phosphorylate both cardiac and skeletal troponin I and T. After 1-hr incubation, the enzyme transfers up to 0.35 mole of phosphorus per mole of skeletal troponin I, up to 0.5 mole of cardiac troponin I and up to 0.1 mole of cardiac and skeletal troponin T. Avian muscle phosphorylase kinase does not phosphorylate the first serine residue of cardiac and skeletal troponin T, but catalyzes the phosphate incorporation into the site(s) of troponin T located in the central or C-terminal parts of the protein molecule. The rate of troponin phosphorylation by pigeon muscle phosphorylase kinase is pH-dependent: the 6.8/8.2 ratio for troponin I is close to 0,2, whereas that with troponin T varies in the range of 0.5-0.7. Troponin phosphorylation by avian phosphorylase kinase depends on the presence of Ca2+ in the incubation mixture. In the presence of 3 mM EGTA troponin I phosphorylation is inhibited by 70-90%, whereas that of troponin T--by 50%. The experimental results indicate that the phosphorylation of troponin I and T is catalyzed either by two different active centers or by different conformations of the single center of avian phosphorylase kinase.

Animals

[Molecular mechanisms of the regulation of phosphorylase kinase from skeletal muscles of mammals and birds].

Red and white avian skeletal muscles (chicken and pigeon) contain the same alpha'-isoenzyme of phosphorylase kinase. According to data from gradient polyacrylamide slab electrophoresis in the presence of SDS, the molecular masses of beta- and gamma-subunits of phosphorylase kinase from rabbit, chicken and pigeon muscles are not identical. Electron microscopy data suggest that the quaternary structure of chicken and pigeon phosphorylase kinase is of the same type. The alpha'-isozyme of chicken and pigeon phosphorylase kinase is strongly activated by calmodulin and troponin C. Avian phosphorylase kinase is activated 2--3-fold by phosphorylation with cAMP-dependent protein kinase and by autophosphorylation. This activation is associated with the phosphorylation of both alpha'- and beta-subunits. The affinity of pigeon phosphorylase kinase a for Ca2+ is 20 times as high as that of phosphorylase kinase b.

Animals

[Decrease in the radiation effect in the lymphoid organs of animals adapting to altitude].

Adaptation to altitude hypoxia exerts a positive effect on the cell density of lymph organs of gamma-irradiated animals. It also reduces radiation degradation of DNA, its availability to DNase in the nuclear chromatin and disorders in the activity of DNA polymerases. The role of inhibition of radiation-induced degradation of chromatin DNA in the protective effect of altitude adaptation on the cell density of lymph organs is discussed.

Adaptation, Physiological

[Nucleic acids of the lymphoid cells of the pregnant rat subjected to space flight and its progeny].

The space flight effect on the synthesis of nucleic acids in spleen lymphocytes in pregnant rats and their offspring was investigated. In addition to the inhibition of the DNA replicative function previously detected in males, activation of RNA synthesis was seen in the pregnant females. Such changes did not develop in the synchronous mockup controls. The 30-day and 100-day old pups of the rats flown in space during the last third of their pregnancy showed no changes in the DNA replicative function. The 100-day old animals displayed only a slight, when compared to the vivarium controls, decline of RNA synthesis which was produced by concomitant factors rather than by microgravity per se. It is supposed that microgravity-induced activation of RNA synthesis in spleen lymphocytes of pregnant rats is associated with the involvement of these cells in adaptive trophic processes that are to maintain plastic homeostasis of the fetus in an unusual environment.

Animals

[RNA-synthesizing activity in the liver of rats after a flight on the Kosmos 1667 biosatellite].

The effect of a short-term flight (7 days) on the RNA synthetic activity in isolated nuclei of the rat liver and its content of nucleic acids was investigated. Postflight the activity of RNA-polymerase, the key enzyme of RNA synthesis, increased. The endogenous synthesis of RNA in nuclei grew, probably, due to the change in the activity of RNA-polymerase. Conversely, the concentration of nucleic acids in the liver tended to decrease. The results obtained give evidence that the changes in the RNA synthetic apparatus of hepatocytes in short-term flights are similar in sign to those seen in long-term flights.

Animals

[DNA radiation injuries in the liver of rats irradiated in flight on the Cosmos-690 biosatellite].

It was found that space flight factors enhanced radiation-induced DNA lesions in the liver of rats flown aboard the biosatellite Cosmos-690. Two weeks after irradiation of animals at a dose of 200 rad characteristic viscosity of native and denatured DNA decreased by 17 and 38%, respectively, as compared with the control. The radiation effect was also increased after an exposure to 800 rad.

Animals

[State of rat liver and spleen DNA after space flight on the "Cosmos-605" satellite].

The effect of space flight on the content of nucleic acids and the structure of DNA in the rat liver and spleen was studied. The 22-day exposure did not influence the DNA content in tissues, whereas the RNA content decreased by 14% and 19% in the liver and spleen, respectively. The flight did not induce changes like one-stranded or paired breakages in the DNA structure. Studies of the liver showed a minor trend towards a fall of elastic viscosity of the DNA supermolecular structure (difference between the flight and control rats was statistically insignificant). The above changes in the state of nucleic acids in the liver and spleen were transient.

Animals

[DNA depolymerase activity in rat spleen following flight on the "Kosmos-605= satellite].

The activity of enzymes involved in DNA disintegration (acid and alkaline DNA-ases) was measured in the spleen of rats flown onboard the Cosmos-605 biosatellite for 22 days. The activity of alkaline DNA-ase remained unaltered whereas that of acid DNA-ase increased more than twice. The activity of acid DNA-ase returned to the normal 26 days postflight. The study of characteristic viscosity (eta) of native and denatured DNA showed that enzyme activation was not followed by degradation changes in the DNA molecule.

Animals