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T M Uporova

Publications and source records attributed to T M Uporova.

10 recordsLinked to original sources

Alternative splicing during chondrogenesis: cis and trans factors involved in splicing of fibronectin exon EIIIA.

Primary chicken mesenchymal cells from limb buds and vertebral chondrocytes have been used to study the changes that occur in alternative mRNA splicing of fibronectin exon EIIIA during chondrogenesis. The mesenchymal cell phenotype (exon EIIIA included) and chondrocyte phenotype (exon EIIIA excluded) were preserved in culture. Both primary cell types were transfected with an EIIIA minigene and alternative splicing was monitored by S1 protection assay. Differential cell-specific splicing of the reporter was observed. The roles of two regulatory elements, an exon splicing enhancer (ESE) and an exon splicing silencer (ESS) were examined. Both elements were required for EIIIA inclusion into mRNA in mesenchymal cells. Gel mobility shift assays revealed that both chondrocyte- and mesenchymal cell-derived nuclear extracts contained exon EIIIA binding factors, but the RNA binding factors present in the two cell types appeared to be distinct. The ESE and ESS appeared to cooperate in the formation of both cell type-specific complexes. These results suggest a model in which inhibitory factors enriched in chondrocytes compete with positive factors enriched in mesenchymal cells for binding to exon EIIIA, determining whether the exon is included.

Alternative Splicing↗

[DNA-duplexes with phosphoamide bond: interaction with restriction endonucleases EcoRII and SsoII].

We studied the interaction of EcoRII and SsoII restriction endonucleases with synthetic DNA duplexes, containing 3'N----5'P and 3'P----5'N phosphoamide internucleotide bonds in one of the cleavage points. Enzymatic hydrolysis of the modified strand of the duplexes is blocked in all cases. The presence of phosphoamide bonds was found to reduce the rate of cleavage of the natural strand by EcoRII and to have no influence in case of SsoII. Properties of the EcoRII endonuclease complex with its substrate, containing non-cleavable 3'N----5'P internucleotide bonds in each cleavage point, were examined. In the presence of Mg2+ ions the equilibrium association constant of the enzyme-substrate complex is 3-fold reduced, and the dissociation rate constant of the complex is increased by 1.5 times.

Base Sequence↗

[Growth and bioenergetics characteristics of a producer of EcoK restriction endonuclease under batch cultivation].

The conditions necessary for the controlled single- and multicycle process of the batch cultivation of E. coli CK, capable of producing E. coli CK specific endonuclease, have been established. This process can be regulated with respect to a number of parameters (temperature, pH, pO2, eH). The possibility of using thermodynamic characteristics, calculated on the basis of the redox potential and disclosing the energetics of growth, for evaluating the effectiveness of controlled batch cultivation. The optimum results have been obtained during the isolation of E. coli CK restriction endonuclease, active and containing no admixture of other endonucleases, at the period from the maximum specific growth rate to the end of the exponential growth phase, i.e. to the beginning of the stationary phase.

Aerobiosis↗

[Detection of the host specificity system in shigellae].

The presence of DNA host specific system in Shigella sonnei 47843 bacteria has been demonstrated. Phage DDIII grown on the cells of Shigella stutzeri 2, in Shigella sonnei 47843 cells is restricted by a factor of 105. Phage T3 of Eco B phenotype as well as DDIII phage is restricted in these cells. This circumstance means that the restriction-modification system of Shigella sonnei 47843 differs in specificity from the well known system E. coli. The results obtained are the second case of host specific system identification in Shigella. The biological properties of the strain (form of the colonies, colicinogenic activity, antibiotic resistance, ability to ferment sugars, etc.) have been studied.

Adsorption↗

[Restriction endonucleases from Shigella sonnei 47].

Two restrictases SsoI and SsoII, belonging to the enzymes of restriction of the class II, were isolated from a strain of dysenteric bacteria. The structure of the site sensitive to SsoI and SsoII was studied after fragmentation of testor DNA as well as by means of direct determination of nucleotide sequence. SsoI was shown to be an isoschizomer of the EcoRI restrictase from E. coli. Restrictase SsoII proved to be a new enzyme, which hydrolyzed the sequence 5' ...CCNGG.. 3' and was distinct from the known restrictases as shown by studies of the type of DNA hydrolyzed. A three-step procedure is developed for isolation of SsoII restrictase involving the consecutive chromatography on Blue Sepharose, phosphocellulose PII and phenyl-Sepharose. Restrictase SsoI and EcoRI were isolated by means of isoelectrofocusing using ampholines.

Bacteriophage lambda↗

[Study of oxidative enzymes of the lignin-degrading fungus Pleurotus ostreatus].

The elctrophoretic separation in polyacrylamide gel of laccase and peroxidase isoenzymes of the lignin-degrading fungus Pleurotus ostreatus was investigated. The optimal electrophoretic conditions were found: in the electrode buffer tris-diethyl barbituric acid pH 7.0 in the gradient gel-4-10% acrylamide. Seven peroxidase isoenzymes oxidizing base benzidine and guaiacol were identified and five laccase isoenzymes reacting with specific substrates-p-phenylene diamine, alphs-naphthol, pyrogallol, hydroquinone were determined.

Agaricales↗