PubMed HealthSearch

Biomedical subjects

L F Efimova

Publications and source records attributed to L F Efimova.

3 recordsLinked to original sources

[Electrophoretic study of muscle extracts of low ionic strength].

The method of Na-dodecylsulfate electrophoresis in polyacrylamide gel demonstrated that the so-called tonoactomyosin of smooth muscles extracted from the muscle homogenate with salt media of low ionic power represented a complicated protein system into whose composition there was included a heavy myosin chain with the mol wt of 210000, premyosin subunit with the mol wt of 230000, actin, and, possibly, a number of other proteins. The extracts of low ionic power possessed Mg2+ and Ca2+ activated by ATP-ase activity. The premyosin subunit was also revealed in the extracts of low ionic power from the skeletal muscle homogenates. It is supposed that premyosin subunit was included into the enzymatic system responsible for the ATP-asic properties of the extracts of low ionic power from the homogenates of different types of muscles.

Actomyosin

[Age peculiarities of actomyosin enzymic properties in embryogenesis].

Age changes in the subunits composition were comparatively studied for protein, ATPase activity, sensitivity to Ca2+ in low concentrations and alkaline activation of ATPase of natural actomyosin of skeletal muscles and myocardium in cattle feti. A rise in values in the process of the mentioned parameters development is established for actomyosin of skeletal muscles. The rise is especially considerable by the end of embryonic development. Correspondingly the myocardium actomyosin possesses a lower ATPase activity and higher sensitivity to Ca2+ in low concentrations. The ATPase activity rises moderately with development.

Actomyosin

[Changes in properties of actomyosin in the process of ontogenesis].

The paper deals with some data on nonidentical heat-resistance of actomyosin of the skeletal muscles and myocardium of the calf foetus and adult animals. It is shown that in the process of uterine development the ATPase activity increases and at alkaline pH the Ca2+-activated ATPase of natural actomyosin of the cattle skeletal muscles and myocardium is activated. Heat-resistance of ATPase of the skeletal muscles and myocardium decreases with age, the myocardium actimyosin ATPase being more stable to heating. These denatured changes are found to be of a reversible character.

Actomyosin