Using CRISPR/Cas9 system, the recipient strains K. phaffii VKPM Y-5013 (His- phenotype) and K. phaffii VKPM Y-5014 (Leu- phenotype) were derived from the K. phaffii VKPM Y-4287 strain, which has a high expression potential. Based on the developed recipient strains, markerless producers of heterologous proteins could be obtained. Efficiency of the gene inactivation with different variants of sgRNA ranged from 65 to 98% and from 15 to 72% for the HIS4 and LEU2 genes, respectively. The recipient strains retained growth characteristics of the parent strain and exhibited high expression potential, as estimated by the production of heterologous phytase from Citrobacter gillenii. Average productivity of the transformants based on the K. phaffii VKPM Y-5013 and K. phaffii VKPM Y-5014 strains was 2.1 and 2.0 times higher than productivity of the transformants of the commercial K. phaffii GS115 strain. Method for sequential integration of genetic material into genome of the K. phaffii VKPM Y-5013 strain was proposed. A highly effective multicopy markerless strain producing C. gillenii phytase was obtained.
The expression potential of various strains from the Collection of the National Bio-Resource Center (BRC VKPM) belonging to the species Komagataella kurtzmanii, K. phaffii, and K. mondaviorum has been assessed by the level of production of the heterologous enzyme, Citrobacter freundii phytase. Heterologous expression in the K. mondaviorum strains was observed for the first time. We identified the strains of K. phaffii Y-4288, K. mondaviorum Y-4331 and K. phaffii Y-4287 species with a high level production of the heterologous enzyme, a high growth rate, the ability to accumulate a large amount of biomass, and moderate thermotolerance. It has been shown that the average productivity of the transformants based on K. phaffii Y-4288, K. mondaviorum Y-4331, and K. phaffii Y-4287 strains exceeds that of the commercial industrial recipient strain K. phaffii GS115 Y-2837 by more than 3, 5, and 6 times, respectively. The K. phaffii Y-4287 and K. mondaviorum Y-4331 strains exhibited moderate thermotolerance and the ability to accumulate a heterologous product at 37°C. The high expression potential of the identified strains opens up the possibility of creating recipient strains on their basis for high-level production of heterologous proteins.
The expression potential of various strains from the Collection of the National Bio-Resource Center (BRC VKPM) collection belonging to the species Komagataella kurtzmanii, K. phaffii, K. mondaviorum has been assessed by the level of production of the heterologous enzyme Citrobacter freundii phytase. Heterologous expression in the K. mondaviorum strains was observed for the first time. The strains of K. phaffii Y-4288, K. mondaviorum Y-4331 and K. phaffii Y-4287 were identified with a high level production of the heterologous enzyme, a high growth rate, the ability to accumulate a large amount of biomass and moderate thermotolerance. It was shown that the average productivity of the transformants based on K. phaffii Y-4288, K. mondaviorum Y-4331, and K. phaffii Y-4287 strains exceeds that of the commercial industrial recipient strain K. phaffii GS115 Y-2837 by more than 3, 5 and 6 times, respectively. The K. phaffii Y-4287 and K. mondaviorum Y-4331 strains exhibited moderate thermotolerance and the ability to accumulate a heterologous product at 37° C. The high expression potential of the identified strains opens up the possibility of creating recipient strains on their basis for high-level production of heterologous proteins. Key words: Komagataella, Pichia pastoris, thermotolerance, expression of heterologous proteins Funding - This work was supported by the Ministry of Science and Higher Education of the Russian Federation (grant no. 075-15-2019-1658 dated October 31, 2019) and was carried out using the resources of the Unique Scientific Facility of the "All-Russian Collection of Industrial Microorganisms" National Bio-Resource Center, NRC «Kurchatov Institute»---GOSNIIGENETIKA.
ABSTRACT The phyCg gene encoding a new phytase from Citrobacter gillenii was optimized, synthesized, cloned and expressed in Pichia pastoris. Analysis of the amino acid sequence of the enzyme showed that it belongs to the histidine acid phosphatase family. The amino acid sequence of the PhyCg phytase has the highest homology (73.49%) with a phytase sequence from Citrobacter braakii. The main characteristics for the purified recombinant phytase were established. The optimum pH and temperature were 4.5 and 50°C, respectively. The specific activity of the enzyme was 1577 U/mg. The Michaelis constant (Km) and the maximum reaction rate (Vmax) for sodium phytate were 0.185 mM and 2185 U/mg, respectively. The enzyme showed the pH and trypsin stability and had a high activity over a wide pH range.