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Strain Improvement of Streptomyces xanthochromogenes RIA 1098 for Enhanced Pravastatin Production at High Compactin Concentrations.
Dzhavakhiya, Vakhtang V; Voinova, Tatiana M; Glagoleva, Elena V; Petukhov, Dmitry V; Ovchinnikov, Alexander I; Kartashov, Maksim I; Kuznetsov, Boris B; Skryabin, Konstantin G.
Affiliation
  • Dzhavakhiya VV; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Voinova TM; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Glagoleva EV; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Petukhov DV; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Ovchinnikov AI; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Kartashov MI; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Kuznetsov BB; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
  • Skryabin KG; Laboratory of Biotechnology of Physiologically Active Compounds, Center for Bioengineering, Russian Academy of Sciences, Prospekt 60-Letiya Oktyabrya, 7/1, Moscow, 117312 Russia.
Indian J Microbiol ; 55(4): 440-6, 2015 Dec.
Article in En | MEDLINE | ID: mdl-26543270
ABSTRACT
Pravastatin is one of the most popular cholesterol-lowering drugs. Its industrial production represents a two-stage process including the microbial production of compactin and its further biocatalytic conversion to pravastatin. To increase a conversion rate, a higher compactin content in fermentation medium should be used; however, high compactin concentrations inhibit microbial growth. Therefore, the improvement of the compactin resistance of a producer still remains a relevant problem. A multi-step random UV mutagenesis of a Streptomyces xanthochromogenes strain RIA 1098 and the further selection of high-yield compactin-resistant mutants have resulted in a highly productive compactin-resistant strain S 33-1. After the fermentation medium improvement, the maximum bioconversion rate of this strain has reached 91 % at the daily compactin dose equal to 1 g/L and still remained high (83 %) even at the doubled dose (2 g/L). A 1-year study of the mutant strain stability has proved a stable inheritance of its characteristics that provides this strain to be very promising for the pravastatin-producing industry.
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