[Duodenase--a new serine proteinase with unusual specificity].
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Biomedical subjects
Publications and source records attributed to V K Antonov.
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Comparative sequence analysis of Escherichia coli ATP-dependent La protease led to the suggestion that Ser679 is the catalytically active enzyme residue. Site-directed mutagenesis Ser679----Ala, investigation of the cells containing the mutant plasmid, and study of the partially purified mutant protein produced results in favour of this suggestion.
Active 3C protease of poliovirus 1(M) was obtained when cloning and expressing fragment HindII-HindIII (bases from 5240 to 6056) of cDNA in vector pTTQ8 in E.coli cells. As shown, fragment 3D of polymerase covalently bound to 3C does not deprive the enzyme of its specific proteolytic activity. The absence of 26 N-terminal amino acids in 3C entails its inactivation. The recombinant 3C protease cleaved peptide bond Gln-Gly not only in virus polyprotein, but also in molecules of beta-galactosidase and bovine catalase.
Wide porous glass (WPG) chemically coated with a poly-N-(2-hydroxyethyl)acrylamide layer is proposed as a carrier of biospecific ligands in affinity chromatography. The method of WPG chemical modification includes synthesis of the gamma-aminopropyl derivative followed by chemical adsorption of poly(p-nitrophenyl acrylate). Ester groups of the polyacrylate-coated WPG can be used for coupling the ligands bearing primary amino groups. Condensation of esters with ethanolamine yields a poly-N-(2-hydroxyethyl)acrylamide-coated support with non-specific adsorption properties resembling those of Sepharose 4B. Human IgG immobilized on the polyacrylate support was used for isolation of the first complement component from human serum and for its separation into subcomponents C1r, C1s and C1q by a one-step method. An unbound part of serum may be used as the R1 reagent for determining haemolytic C1 activity. The stepwise elution of C1r, C1s and C1q from the column reflects the course of C1 breakdown after its activation on immune complex formation.
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Expression of the 3C protease gene of poliovirus type 1 (Mahoney) in E. coli cells using various vectors was studied. The 3C gene was shown to be expressed effectively upon its cloning in HindII/HindII (bases 5240 to 6770) and in HindII/HindIII (bases 5240 to 6056) fragments of poliovirus cDNA in pTTQ8 vector containing tac-promoter and lacI-repressor gene. Products of processing at the N-terminal 3C protease Gln-Gly site and polypeptides formed upon translation from an alternative methionine, which was coded by bases 5516-5518 of poliovirus cDNA, were found among virus-specific proteins. Processing at the C-terminal 3C protease Gln-Gly site was not observed.
All the forms of 3C protease previously found were isolated and purified. A 3D polymerase's fragment covalently bound with 3C protein does not affect the specific proteolytic activity of the enzyme, whereas the elimination of 26 N-terminal amino acid residues of 3C protease leads to its inactivation.
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A radioimmunochemical method of determination of leucine-binding protein and a method, based on the selective absorption of the protein and its complex with leucine on DEAE-cellulose, has been developed. The protein content in the E. coli cells at different stage of growth has been determined by the radioimmunochemical and equilibrium dialysis methods. It was shown that the protein content in the cells is practically independent of the growth-phase.
New data on the specificity and mechanism of action of porcine pepsin are presented, including statistical analysis of protein cleavage by the enzyme, kinetics of synthetic substrates, enzyme inhibition and activation, kinetics of transpeptidation reaction, and 180 exchange studies. From these data it was concluded that pepsin has an extended active site being able to accomodate specifically five amino acid residues of the substrate. The orientation of the substrate molecule relative to the ethanol binding loci in pepsin crystals has been determined. Pepsin mechanism includes "amino-enzyme" formation which chemically is not an amide, formed by the enzyme carboxyl with the amino fragment of the substrate.
beta-Galactosidase (EC 3.2.1.23) from fungus Curvularia inaequalis was modified by active brilliant orange KH and adsorbed on DEAE-Sephadex A-50. The lactose hydrolysis was studied in a continous flow on the column packed with the immobilized enzyme. The pH and temperatures optima for the substrate hydrolysis by the immobilized enzyme were shown to remain unchanged. A certain destabilizing effect of the matrix on the enzyme resistance to hear denaturation was observed. The activation parameters of denaturation of the native enzyme as well as those of the dye-modified and immobilized preparations were determined.
Reversible thermal denaturation of alpha-chymotrypsin, its electrostatic complexes with carboxyl-containing polymers and the enzyme covalently bound with those polymers were studied. It was shown that the enzyme stability is affected by matrix, which manifests itself in a simultaneous decrease in enthalpy and enthropy of the reversible denaturation process and a simultaneous decrease in activation enthalpy and enthropy of denaturation. Modification and complexing of chymotrypsin with polymers has practically no effect on the activation parameters of renaturation. Differences in the original states of alpha-chymotrypsin and its derivatives and similarity of their activated states are proposed. The formation of ionic complexes of enzyme or covalent binding to polymers results in alteration of the protein native state similar to the denaturated state.
The temperature-induced unfolding of alpha-chymotrypsin and of chymotrypsin covalently bound to two soluble transparent carriers, dextran and a copolymer of maleic acid anhydride and acrylic acid, has been studied by tryptophan fluorescence emission, circular dichroic and kinetic measurements. It has been shown that the structural and functional properties of the enzyme when bound to the anionic copolymer are strongly influenced by electrostatic interactions. A number of reference experiments with anionic polyelectrolytes and the hydrogenated monomers of the copolymer suggest that these changes are brought about by the cooperative ion pair formation between protein and polyanionic matrix.
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The inhibitory effect of alkylboronic acids H(CH2)nB(OH)2(n=2-8) and Ph(CH2)n-B(OH)2, (n=0-4), on the alkaline mesentericopeptidase-catalysed hydrolysis of synthetic substrates was studied. It was shown that alkylboronic acids act as bifunctional reversible inhibitors. The borate group interacts with an ionogenic group of the enzyme with a pKa of about 6.9-7.0. The latter is probably the catalytically active imidazole of the active centre. The hydrocarbon part of the molecule also takes part in the formation of the enzyme-inhibitor complex. The dependence of the degree of the enzyme-inhibitor complex formation upon the length of the side-chain of the inhibitor indicates the presence of two binding sites on the enzyme molecule.
beta-galactosidase from fungus Curvularia inaequalis was modified by a chlortriazin dye active bright-orange KH. The modified enzyme contained two molecules of dye per one molecule of protein. The incorporation of six sulfuric groups with remains of the dye resulted in a slight decrease of the acid protein isoelectric point. The catalytic activity of the modified protein remains practically unchanged. The coloured protein is firmly absorbed on anionites. Preparations of immobilized beta-galactosidase were obtained by adsorption on anionites.
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