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Biomedical subjects

G I Mashanov

Publications and source records attributed to G I Mashanov.

6 recordsLinked to original sources

Visualizing single molecules inside living cells using total internal reflection fluorescence microscopy.

Over the past 10 years, advances in laser and detector technologies have enabled single fluorophores to be visualized in aqueous solution. Here, we describe methods based on total internal reflection fluorescence microscopy (TIRFM) that we have developed to study the behavior of individual protein molecules within living mammalian cells. We have used cultured myoblasts that were transiently transfected with DNA plasmids encoding a target protein fused to green fluorescent protein (GFP). Expression levels were quantified from confocal images of control dilutions of GFP and cells with 1-100 nM GFP were then examined using TIRFM. An evanescent field was produced by a totally internally reflected, argon ion laser beam that illuminated a shallow region (50-100 nm deep) at the glass-water interface. Individual GFP-tagged proteins that entered the evanescent field appeared as individual, diffraction-limited spots of light, which were clearly resolved from background fluorescence. Molecules that bound to the basal cell membrane remained fixed in position for many seconds, whereas those diffusing freely in the cytoplasm disappeared within a few milliseconds. We developed automated detection and tracking methods to recognize and characterize the behavior of single molecules in recorded video sequences. This enabled us to measure the kinetics of photobleaching and lateral diffusion of membrane-bound molecules.

Animals↗

Muscle force is generated by myosin heads stereospecifically attached to actin.

Muscle force is generated by myosin crossbridges interacting with actin. As estimated from stiffness and equatorial X-ray diffraction of muscle and muscle fibres, most myosin crossbridges are attached to actin during isometric contraction, but a much smaller fraction is bound stereospecifically. To determine the fraction of crossbridges contributing to tension and the structural changes that attached crossbridges undergo when generating force, we monitored the X-ray diffraction pattern during temperature-induced tension rise in fully activated permeabilized frog muscle fibres. Temperature jumps from 5-6 degrees C to 16-19 degrees C initiated a 1.7-fold increase in tension without significantly changing fibre stiffness or the intensities of the (1,1) equatorial and (14.5 nm)(-1) meridional X-ray reflections. However, tension rise was accompanied by a 20% decrease in the intensity of the (1,0) equatorial reflection and an increase in the intensity of the first actin layer line by approximately 13% of that in rigor. Our results show that muscle force is associated with a transition of the crossbridges from a state in which they are nonspecifically attached to actin to one in which stereospecifically bound myosin crossbridges label the actin helix.

Actins↗

[Early hypoxic contracture of the myocardium in adult and newborn rats].

The effect of 30 min substrate free hypoxia (H) on isometric tension was studied in isolated myocardium (M) of adult (A) and newborn (N) rats. The perfusion with 50% Na+ H solution caused in AM the development of H contracture which was more than 50% higher than control contracture. H perfusion with 0.1 mM Ca2+, 1.0 mM La3+, and 10.0 mM of caffeine provides the discrimination of control and hypoNa+ contractures. It is assumed that early H contracture in AM is a result of inability of Ca-sequestering system to accumulate intracellular Ca2+ and Ca2+ influxing through the sarcolemma. In myocardium of N rats Na-Ca exchange is proposed as a main source of Ca2+ for H contracture development.

Animals↗

[Effects of amitriptyline on the contractile function of the myocardium. Dobutrex in the role of a positive inotropic agent].

Study of the effect of a tricyclic antidepressant amitriptyline on an isolated papillary muscle of the rat left ventricle showed a decrease of the contractility due to depression of the potential of action and the slow calcium channels, as well as decreased rate and prolongation of contraction caused by impairment of calcium reabsorption from the sarcoplasma. Injection of dobutrex after amitriptyline has a positive inotropic effect by completely removing the disorders in the time parameters of contraction.

Amitriptyline↗

[A cross-bridge model for the artificial mobile systems].

A simple kinetic scheme of the mechano-chemical cycle of the cross-bridge is proposed. It was found on the experiments with using of caged ATP and the experiments with the limited number of the myosin molecules in motility assay in vitro. The model reproduces the results of the experiments in motility assay in vitro and allows to investigate the actin-myosin complexes at an external load condition.

Actins↗