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KMID : 0545120150250111863
Journal of Microbiology and Biotechnology
2015 Volume.25 No. 11 p.1863 ~ p.1870
Improvement of Fibrinolytic Activity of Bacillus subtilis 168 by Integration of a Fibrinolytic Gene into the Chromosome
Jeong Seon-Ju

Park Ji-Yeong
Lee Jae-Yong
Lee Kang-Wook
Cho Kye-Man
Kim Gyoung-Min
Shin Jung-Hye
Kim Jong-Sang
Kim Jeong-Hwan
Abstract
Fibrinolytic enzyme genes (aprE2, aprE176, and aprE179) were introduced into the Bacillus subtilis 168 chromosome without any antibiotic resistance gene. An integration vector, pDG1662, was used to deliver the genes into the amyE site of B. subtilis 168. Integrants, SJ3-5nc, SJ176nc, and SJ179nc, were obtained after two successive homologous recombinations. The integration of each fibrinolytic gene into the middle of the amyE site was confirmed by phenotypes (Amy-, SpecS) and colony PCR results for these strains. The fibrinolytic activities of the integrants were higher than that of B. subtilis 168 by at least 3.2-fold when grown in LB broth. Cheonggukjang was prepared by inoculating each of B. subtilis 168, SJ3-5nc, SJ176nc, and SJ179nc, and the fibrinolytic activity of cheonggukjang was 4.6 ¡¾ 0.7, 10.8 ¡¾ 0.9, 7.0 ¡¾ 0.6, and 8.0 ¡¾ 0.2 (U/g of cheonggukjang), respectively at 72 h. These results showed that construction of B. subtilis strains with enhanced fibrinolytic activities is possible by integration of a strong fibrinolytic gene via a marker-free manner.
KEYWORD
Bacillus subtilis, fibrinolytic genes, chromosome integration, integration vector
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