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Biomedical subjects

I I Krivoĭ

Publications and source records attributed to I I Krivoĭ.

At least 19 recordsLinked to original sources

[Analysis of the interaction between nicotinic acetylcholine receptor and Na+,K(+)-ATPase in the rat skeletal muscle and the Torpedo electric organ membrane preparation].

The interaction between the nicotinic acetylcholine receptor and Na+,K(+)-ATPase described previously was further studied in isolated rat diaphragm and in a membrane preparation of Torpedo californica electric organ. Three specific agonists of the nicotinic receptor: acetylcholine, nicotine and carbamylcholine (100 nmol/L each), all hyperpolarized the non-synaptic membranes of muscle fibers by up to 4 mV. Competitive antagonists of nicotinic acetylcholine receptor, d-tubocurarine (2 mcmol/L) or alpha-bungarotoxin (5 nmol/L) completely blocked the acetylcholine-induced hyperpolarization indicating that the effect requires binding of the agonists to their specific sites. The noncompetitive antagonist, proadifen (5 mcmol/L), exerted no effect on the amplitude of hyperpolarized but decreased K0.5 for this effect from 28.3 +/- 3.6 nmol/L to 7.1 +/- 2.3 nmol/L. Involvement of the Na+,K(+)-ATPase was suggested by data demonstrating that three specific Na+,K(+)-ATPase inhibitors: ouabain, digoxin or marinobufagenin (100 nmol/L each), all inhibit the hyperpolarizing effect of acetylcholine. Acetylcholine did not affectation either the catalytic activity of the Na+,K(+)-ATPase purified from sheep kidney or the transport activity of the Na+,K(+)-ATPase in the rat erythrocytes, i. e. in preparations not containing acetylcholine receptors. Hence, acetylcholine does not directly affect the Na+,K(+)-ATPase. In a Torpedo membrane preparation, ouabain (< or = 100 nmol/L) increased the binding of the fluorescent ligand: Dansyl-C6-choline (DCC). No ouabain effect was observed either when the agonist binding sites of the receptor were occupied by 2 mmol/L carbamylcholine, or in the absence Mg2+, when the binding of ouabain to the Na+,K(+)-ATPase is negligible. These results indicate that ouabain only affects specific DCC binding and only when bound to the Na+,K(+)-ATPase. The data obtained suggest that, in two different systems, the interaction between the nicotinic acetylcholine receptor and the Na+,K(+)-ATPase specifically involve the ligand binding sites of these two proteins.

Acetylcholine↗

[Ouabain-induced blockade of alpha2 isoform of the Na,K-ATPase on electrophysiological and contractile characteristics of the rat diaphragm].

In experiments with isolated neuromuscular preparation of the rat diaphragm, selective blockade of alpha2 isoform of the Na,K-ATPase with ouabain (1 mcmol/L) induced steady depolarization of muscle fibers that reached a maximum of 4 mV, a decrease in amplitude of muscle fiber action potential, and prolonged raising and decline phases of the action potential. At the same time, the force, time to peak, and half relaxation time of the isometric muscle twitch were increased, as well as the area under the contraction curve. During continuous fatiguing stimulation (2/s), a more pronounced decline of contraction speed was observed in presence of ouabain; dynamics of the half-relaxation time remaining unchanged. It is suggested that blockade of alpha2 isoform of the Na,K-ATPase impairs excitation-contraction coupling resulting in a delay of Ca2+ release from sarcoplasmic reticulum. The increase in contraction force seems to result from a mechanism similar to that of positive inotropic effect of cardiac glycosides in heart muscle. Physiological significance of the skeletal muscle alpha2 isoform of the Na,K-ATPase in regulation of Ca2+ and Na+ concentrations near triadic junctions and in regulatory processes involving the Na,K-ATPase endogenous modulators or transmitter acetylcholine is discussed.

Animals↗

[Functional interaction between nicotinic cholinergic receptors and Na, K-ATPase in the skeletal muscles].

Acetylcholine (ACh) hyperpolarized the rat diaphragm muscle fibers by 4.5 +/- 0.8 mV (K0.5 = = 36 +/- 6 nmol/l). The AC-induced hyperpolarization was blocked by d-tubocurarine and ouabain in nanomolar concentrations. This effect of ACh was not observed in cultured C2C12 muscle cells and in Xenopus oocytes with expressed embryonic mouse muscle nicotinic acetylcholine receptors (nAChR) or with neuronal alpha 4 beta 2 nAChR. In membrane preparations from the Torpedo californica electric organ, containing both nAChR and Na, K-ATPase, 10 nmol/l ouabain modulated the binding kinetics of the cholinergic ligand dansyl-C6-choline to the nAChR. These results suggest that in-sensitive alpha 2 isoform) and nAChR in a state with high affinity to Ach and d-tubocurarine may form a functional complex in which binding of ACh to nAchR is coupled to activation of the Na, K-ATPase.

Acetylcholine↗

[From diversity of molecular forms to functional specialization of oligomeric proteins, nicotinic acetylcholine receptor, acetylcholinesterase and Na+, K+-ATPase].

The review is devoted to the issue of diversity of molecular forms of oligomeric proteins using as examples members of the three protein classes: nicotinic acetylcholine receptor, acetylcholinesterase, and Na,K-ATPase. The data are presented on the molecular structure of proteins, subunit compositions, and isoforms of subunits, as well as on some features of gene expression. Particular emphasis has been made on the functional specialization of different molecular forms of one and the same oligomeric protein. The three above proteins, which serve seemingly quite different cellular processes, demonstrate many common principles of molecular mechanisms of physiological function.

Acetylcholinesterase↗

[Porcine kidney extract contains a specific inhibitor of the ouabain-sensitive alpha2-isoform of Na, K-ATPase present in rat diaphragm fibres].

In experiments on isolated rat diaphragm muscle, acetylcholine (100 nmol/l) hyperpolarized muscle fibres due to activation of the alpha 2 isoform of Na,K-ATPase. This hyperpolarization was blocked in a dose-dependent manner by ouabain (K0.5 = 8 +/- 4 nmol/l) as well as by a solution of porcine kidney extract (10 kDa cut-off filtration), with the K0.5 approximately equal to a 1:20,000-fold dilution. The inhibitory activity of the developed slowly over a period of 3 hours and, in contrast to ouabain, was still present after 1 hour of washing. Ouabain, but not the extract, inhibits Rb+ uptake in human erythrocytes that only express the alpha = 1 isoform of Na, K-ATPase. Our data suggest that in rat skeletal muscle the alpha 1 isoform of Na,K-ATPase is primarily responsible for ionic homeostasis, while the alpha 2 isoform provides a "regulatable" function and may be controlled by cholinergic stimulation and/or endogenous digitalis-like factors (EDLFs). Porcine kidney extract contains a factor (M. W. < 10 kDa) that selectively inhibits the rat alpha 2 isoform and differs from ouabain. Our experimental protocol can be used as a highly sensitive physiological assay for factors that selectively inhibit the alpha 2 isoform of Na,K-ATPase.

Animals↗

[Non-transmitter effect of acetylcholine in the neuromuscular preparation].

Acetylcholine was shown to maintain the efficiency of a fatigued muscle of rat increasing the evoked transmitter release and inducing a hyperpolarization of the muscle fibre membrane. The effects proved to be long-term ones. Modulatory effects of acetylcholine were shown to be realized via structures which differed pharmacologically from the typical n- and m-cholinoreceptors with the participation of ouabain-sensitive isoforms of Na+, K(+)-ATPase. The data obtained corroborates existence of a long-term neuronal regulation of the neuromuscular transmission efficiency involving non-quantal acetylcholine. The regulatory pathways are supposed to be different in muscle fibres with different functional characteristics and different ability of adaptation under physiological loading.

Acetylcholine↗

[The effect of acetylcholine on neuromuscular transmission in the fatigued rat diaphragm with blocked acetylcholinesterase].

The rat phrenic-diaphragm preparations with amine-inhibited acetylcholinesterase were fatigued by rhythmical nerve stimulation. Tetanization of the nerve by bursts of stimuli 20/sec led to a long-term recovery of muscle contractions of the fatigued muscles. The recovery was completely abolished by tubocurarine and partially--by atropine. Acetylcholine bathing simulated the effect of tetanization. Probable mechanisms of this phenomenon are discussed.

Acetylcholine↗

[Postsynaptic potentiation of end plate currents in the rat diaphragm at different levels of synaptic acetylcholinesterase activity].

Nerve-evoked end-plate currents were recorded intracellularly in rat diaphragm when acetylcholinesterase (AChE) was intact or in the presence of galanthamine which reduces AChE activity up to 50% or 75%. Coefficient of correlation of the dependence between half-decay time and amplitude of end-plate currents during short tetanic stimulation pulse (20, 50 and 100 impulses per second) of motor nerve and the slope of this dependence were used to estimate the postsynaptic potentiation. Our results indicate that postsynaptic potentiation shows up clearly when AChE is fully active and grows significantly when AChE activity is slightly reduced. It is proposed that the modulation of the synaptic transmission can be performed by means of postsynaptic potentiation and synaptic AChE can take part in such way of modulation when varying its own activity under the influence of any endogenous factors.

Acetylcholinesterase↗

[Atypical miniature end plate currents in neuromuscular synapses of the rat under normal conditions, after acetylcholinesterase inhibition and cooling].

In the end-plates of rat diaphragm among atypical miniature end-plate currents (MEPCs) 2.9% were giant and 5.1% were slowly rising. The frequency of the giant MEPCs was decreased when temperature was lowered and increased when acetylcholinesterase (AChE) was inhibited; the latter effect was reversed if d-tubocurarine was added. Frequency of the slowly rising MEPCs changed insignificantly by all conditions. It is suggested that a highly temperature-dependent presynaptic mechanism of giant MEPC generation does exist which is activated by acetylcholine (ACh). Data about changes in the time course of the slowly rising MEPCs by AChE inhibition and lowering of temperature make it possible to suggest that the slowly rising MEPCs may be accounted for either slow release of ACh quanta or release of quanta on large distances from synaptic cleft and postsynaptic cholinoreceptors. The latter is possible if ACh quanta are released from synaptic Schwann cell to periaxonial space.

Acetylcholine↗

[An attempt to estimate various characteristics of neuro-muscular transmission from the rising phase of miniature end-plate currents].

A simple expression describing the relation between the duration of rising phase and amplitude of miniature end-plate currents (MEPC) is suggested. Parameters of MEPC of the rat diaphragm with different degrees of acetylcholinesterase inhibition by galanthamine were used to estimate the lower levels of acetylcholine diffussion coefficient (0.86.10-6 cm2/s) and channel opening rate constant (21000 s-1).

Acetylcholine↗

[Restoration of neuromuscular transmission in the rat diaphragm after the action of an organophosphorus inhibitor of acetylcholinesterase by using curare].

The acetylcholinesterase phospho-organic inhibitor armine (4.10(-7) M) reduces the muscle response to a single nerve stimulus (up to 50%) and the nerve-induced tetanic tension in the rat phrenic-diaphragm muscle preparation. Tubocurarine exerts a similar effect. Substitution of armine by 0.5.10(-7) or 1.10(-7) M tubocurarine for 60-90 min leads to almost complete restoration of neuromuscular transmission. In the presence of armine, tubocurarine exerts a considerably lesser effect. Possible pre- and post-synaptic mechanisms of the tubocurarine action, are discussed.

Action Potentials↗

[Quantitative estimation of synaptic acetylcholinesterase inhibition with galanthamine using parameters of miniature endplate currents].

Miniature end-plate currents (MEPC) were recorded in voltage clamped muscle fibers of the rat diaphragm at different degrees of acetylcholinesterase (AChE) inhibition with galanthamine. A model has been suggested connecting the increase in MEPC amplitude with the concentration of a competitive reversible AChE inhibitor. Using the model suggested, the changes in the junctional AChE activity inhibited with different concentrations of galanthamine were estimated. The calculated value of the inhibitory galanthamine constant is 2.8 X 10(-7) M.

Acetylcholinesterase↗