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T P Krasnova

Publications and source records attributed to T P Krasnova.

8 recordsLinked to original sources

[Method for developing a controlled process. Study of the possible regulation of rifamycin B biosynthesis].

A procedure for developing a controlled process for biosynthesis of secondary metabolites is described with reference to rifamycin B as an example. The response of the antibiotic producing culture to changed concentrations of the main nutrients in the initial medium was determined. Mathematical processing of the experimental findings with design of the experiment resulted in defining nutrients such as ammonium sulfate and cornsteep liquor useful for further development of the controlled process.

Ammonium Sulfate

[A method for developing a controlled process. Development and execution of a program supplying culture medium components for rifamycin B biosynthesis].

The study provided data on the rate of consumption of the main nutrients by the rifamycin-producing culture in relation to their content in the initial medium. A program for feeding ammonium sulfate and cornsteep liquor and joint control of both the nutrients was developed and tested. The results of the testing confirmed the practicable precision of the feeding. The control of cornsteep liquor and ammonium sulfate concentrations with the program allowed to increase the yield of rifamycin B by 15 and 20%, respectively. The joint control increased the level of the required product by 25%.

Ammonium Sulfate

[Role of the components in the methylation system in the cobalamin-dependent gentamycin biosynthesis by a Micromonospora purpurea culture].

It was found that under conditions of a short-term cultivation of the Co-deficient mycelium of M. purpurea var. violaces 1935 in the synthetic medium the level of gentamicin biosynthesis increased on the average by 2--2.5 times when cyancobalamine, methylcobalamine, L-methionine or L-serine were added to the medium. Glycine and H2-pholate increased the gentamicin yield on the average by 1.5--1.8 times. When the concentration of L-methionine in the medium was optimal, production of gentamicin by the Co-deficient mycelium markedly increased on addition of extra amounts of cyancobalamine into the medium. An analogous high level of gentamicin biosynthesis was observed in the absence of L-methionine, when combinations of H2-pholate and L-serine or cyancobalamine, H2-pholate and glycine were added to the medium. The data of the study indicate that the pholate-dependent neogenesis of -CH3 group and the methyl-B12-dependent resynthesis of L-methionine play an important functional role in biosynthesis of gentamicin.

Cobalt

[Role of cobalt in the biosynthesis of the components of the gentamicin complex].

It was shown that addition of cobalt ions or vitamin B12 to the fermentation medium resulted in an increase in the level of gentamicin accumulation, the relative content of the most methylated components C1 and C2 in the gentamicin complex being increased, while the content of the least methylated components CIa and "minors" decreased. Addition of sulphodimezine lowered the gentamicin biosynthesis rate and the relative content of gentamicins C1 and C2. It was supposed that cobalt stimulated the B12-dependent synthesis of methionine, being the source of the methyl groups for biosynthesis of the methylated components of gentamicin complex.

Cobalt

[Dependence of the component makeup of the gentamicin complex on Micromonospora purpurea var. violacea 1935 cultivation conditions].

Dependence of biosynthesis of gentamicin and vitamin B12 on complex and "synthetic" media under conditions of decreased aeration, increased phosphorus levels and non-optimal content of carbon source was studied. The decreased levels of vitamin B12 production under conditions of the non-optimal content of the carbon source and increased phosphorus levels in the medium resulted in decreased production of the antibiotic complex as a whole and decreased relative content of the most methylated gentamicins C1 and C2 in the complex. Decreased aeration lowered the mycelium productivity with respect to the antibiotic production without changing the ratio of the components in the complex and the level of vitamin B12 production.

Aerobiosis

[Synthetic medium for the biosynthesis of gentamicin].

A synthetic medium for biosynthesis of gentamicin was developed. It includes maltose, gelatine, potassium phosphate, ammonium sulphate, cobalt chloride, sodium chloride, magnesium sulphate and zinc sulphate. The dynamics of the biochemical changes in the above medium was studied.

Culture Media

[Effect of cobalt on the growth of a Micromonospora purpurea var. violacea 1935 culture and on the biosynthesis of gentamincin].

The effect of cobalt on growth of Micromonospora purpurea var. violacea 1935 and biosynthess of gentamicin in complex soy-bean meal or "synthetic" gelatin medium was studied. In optimal concentrations cobalt increased the activity level of the culture fluid almost 6 times in both media having practically no effect on the amount of the mycelium formed. Addition of cobalt to the medium resulted in retardation of the organism growth and consumption of the nutrients. Stimulation of gentamicin biosynthesis by cobalt was inversely proportional to the time of the trace element addition. The cobalt effect depended on the aeration conditions, inorganic phosphorus level in the medium and physiological condition of the mycelium.

Aerobiosis