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M Sokolovsky

Publications and source records attributed to M Sokolovsky.

At least 163 records · Page 9Linked to original sources

Isonitrile derivatives of polysaccharides as supports for the covalent fixation of proteins and other ligands.

A method for the introduction of side chains containing isonitrile (isocyanide, functional group) on the backbone of polysaccharides and other hydroxylic polymers was developed. The method was based on (a) ionization of some of the hydroxyl groups on the polymer by treatment with a strong base (tert-butoxide) in a polar aprotic solvent (dimethylsulfoxide), and (b) introduction of side chains containing isonitrile groups by nucleophilic attack of the polymeric alkoxide ions on a low molecular weight isonitrile containing a good leaving group in the omega-position, (1-tosyl-3-isocyanopropane). By this method, the side chains containing the-NC functional groups are attached to the polymeric backbone via stable ether bonds. The isonitrile derivatives of cellulose, linear and cross-linked dextran and cross-linked agarose utilized for the covalent fixation of high and low molecular weight ligands by four-component reactions carried out in aqueous medium, at neutral pH.

Cellulose↗

Single-step isolation and resolution of pancreatic carboxypeptidases A and B.

Carboxypeptidases A and B have been isolated individually from aqueous extracts of mammalian pancreatic acetone powders by affinity chromatography on [N-(epsilon-aminocaproyl)-p-aminobenzyl]succinyl-Sepharose 4B (CABS-Sepharose). The affinity ligand was synthesized from DL-benzylsuccinic acid, purified, and characterized by UV absorption and NMR spectroscopy. Both enzymes from the various species were homogeneous by NaDodSO4-polyacrylamide gel electrophoresis and displayed high specific activities. No cross contamination of one enzyme species with the other was found. The ease of synthesis of the ligand from its commercially available precursor, its stability, and the mild elution conditions render CABS-Sepharose an excellent affinity support for the single-column isolation of both carboxypeptidases A and B. The procedures extend the utility of this resin previously demonstrated for carboxypeptidase A from human pancreatic juice [Peterson, L. M., Sokolovsky, M., & Vallee, B. L. (1976) Biochemistry, 15, 2501]. The use of CABS-Sepharose as a general affinity matrix for the isolation of metallocarboxypeptidases is suggested.

Animals↗

Multilayer immobilized-enzyme filter reactors: urease bound to nylon fabric filters.

Urease was bound to commercially available nonwoven nylon fabric filters. Multilayer immobilized-enzyme filter reactors were constructed by packing varying numbers of urease-nylon filters in a column. Owing to the relatively open structure and high mechanical strength of the filter fabric, compaction and pressure drop effects were minimal. The reactors could be operated in a wide range of substrate concentrations and flow rates under conditions where mass-transfer limitations could be neglected. The kinetic behavior of the immobilized-enzyme filter reactors could be described by a linear form of the integrated Michaelis-Menten equation using a model based on the sequential action of the enzyme filters.

Acrylamides↗

Structure-activity relationship in a new series of atropine analogues. 1. N,N'-Disubstituted 6,7-diazabicyclo[3.2.2]nonane derivatives.

The synthesis of a new series of N,N'-disubstituted 6,7-diazabicyclo[3.2.2]nonane derivatives is described. The antimuscarinic potency of these drugs was evaluated in the guinea pig ileum and compared to that of atropine sulfate. All the drugs tested competitively inhibited the acetylcholine-induced contractions. Kd values were calculated and, in several cases, compared to those obtained by direct binding to the muscarinic receptor from mouse brain. The order of potencies followed that which is known for various tropine and pseudotropine esters; that is, the 3alpha configuration is more potent than the 3beta configuration, and the quaternary analogues are more potent than the tertiary ones. The antimuscarinic activity of the drugs is dicussed in terms of their acetylcholine-like molecular arrangement that gives rise to a characteristic interaction pharmacophore.

Animals↗

Mechanism of acetylcholine release: possible involvement of presynaptic muscarinic receptors in regulation of acetylcholine release and protein phosphorylation.

Acetylcholine (AcCho) release from purely cholinergic Torpedo synaptosomes was evoked by K+ depolarization in the presence of Ca2+. Activation of muscarinic receptors, present in the synaptosomal fraction, by the agonist oxotremorine resulted in the inhibition of AcCho liberation. This inhibition was abolished by the muscarinic antagonist atropine, which by itself has no effect. These findings suggest that the muscarinic receptor, present in the electric organ of Torpedo is presynaptic and that its physiological function is to regulate AcCho release by negative feedback. The mechanism of presynaptic muscarinic inhibition was investigated by examining the effect of muscarinic ligands on synaptosomal 45Ca2+ uptake and on the level of phosphorylation of specific synaptosomal proteins. Ca2+-dependent K+ depolarization-induced synaptosomal AcCho release was accompanied by 45Ca2+ uptake and by a marked increase in the phosphorylation of a specific synaptosomal protein (band alpha) of approximately 100,000 daltons. Activation of the muscarinic receptor by the agonist oxotremorine had no detectable effect on synaptosomal 45Ca2+ uptake but resulted in the concomitant inhibition of AcCho release and of phosphorylation of band alpha. The muscarinic antagonist atropine abolished the inhibitory effect of oxotremorine both on AcCho liberation and on phosphorylation of band alpha. These findings suggest that phosphorylation of band alpha may be involved in regulation of the presynaptic processes that underly AcCho release and that activation of the muscarinic receptor by agonists may inhibit AcCho release by blocking the phosphorylation of band alpha.

Acetylcholine↗

Studies on muscarinic acetylcholine receptors from mouse brain: characterization of the interaction with antagonists.

The binding of tritium labeled N-methyl-4-piperidyl benzilate (4-NMPB) and scopolamine to the muscarinic receptor from mouse brain was investigated at 10, 25 and 37 degrees C. Approach to equilibrium experiments indicated that association involved a single population of binding sites. The formation of at least two types of ligand-receptor complexes had however to be assumed to explain the data obtained at 25 and 37 degrees C by equilibrium and dissociation experiments. In contradistinction, at 10 degrees C a single population of ligand-receptor complexes could be detected. The simplest model which fits the experimental findings consists of a fast binding step followed by a slow isomerization process of the receptor-ligand complex.

Acetylcholine↗

On the interaction of drugs with the cholinergic nervous system. I. Tolerance to phencyclidine derivatives in mice: pharmacological characterization.

Phencyclidine [1(1-phenylcylohexyl) piperidine] and cyclohexamine [1(1-phenylcyclohexyl) ethylamine) were used as model psychotropic drugs to study the phenomenon of tolerance in mice. The behavioral effects of these drugs were measured by forced motor activity using the rotarod test. Tolerance develops progressively with chronic treatment at a rate and to a degree that are dose-dependent. The optimal conditions for tolerance induction are s.c. administration with 4-h intervals. The process of tolerance development is expressed in concomitant changes in five indices chosen for its quantification: ED50 values, duration, duration-dose dependency, critical falling time, and body weight. All these changes were found to be totally reversible, with no carry-over between two consecutive tolerance cycles. It was established that cyclohexamine is a better tolerance-inducer than phencylidine, although the nature of the tolerance developed for both drugs is qualitatively similar.

Animals↗