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새우젓으로부터 혈전과 chitin 분해능을 지닌 균주 Bacillus licheniformis SC082의 분리 및 특성Isolation and Characterization of Bacillus licheniformis SC082 Degrading Fibrin and Chitin from Shrimp Jeot-Gal

Other Titles
Isolation and Characterization of Bacillus licheniformis SC082 Degrading Fibrin and Chitin from Shrimp Jeot-Gal
Authors
최영주조은경정유정갈상완
Issue Date
2009
Publisher
한국생명과학회
Keywords
Shrimp Jeot-Gal; fibrinolysis; chitinase activity; Bacillus licheniformis SC082; antioxidant activity; Shrimp Jeot-Gal; fibrinolysis; chitinase activity; Bacillus licheniformis SC082; antioxidant activity
Citation
생명과학회지, v.19, no.10, pp 1424 - 1431
Pages
8
Indexed
KCI
Journal Title
생명과학회지
Volume
19
Number
10
Start Page
1424
End Page
1431
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/26497
ISSN
1225-9918
2287-3406
Abstract
Shrimp Jeot-Gal is a popular traditional Korean fermented seafood and has been used for seasoning. We isolated a bacterium showing strong extra-cellular fibrinolysis and chitinase activity from shrimp Jeot-Gal and the strain was designated SC082. SC082 was identified as Bacillus licheniformis by 16S rRNA sequence homology search. B. licheniformis SC082 exhibited optimum temperature, pH, and salt concentration at 37oC, pH 7.0, and 6%, respectively. Substrate specificity of the culture supernatant from B. licheniformis SC082 was detected in fibrin, skim milk, and chitin plate. The fibrinolytic activity was highly maintained up to 50oC at a pH of 7.0 for 3 hr and was stable up to pH 9.0 at 37oC for 3 hr. The chitinase activity was remarkably induced by addition of 1.0% colloidal chitin and the pH and temperature optima of the enzyme were 5.0 and 45oC, respectively. In sodium dodecyl sulfate-polyacrylamide gel electrophoresis and zymogram analysis, this strain produced three fibrinolytic isozymes and two chitinase isozymes. The approximate molecular weights of the putative fibrinolytic enzymes were 23.0, 62.0, and 72.0 kDa and those of the chitinases were 62.0 and 55.0 kDa, respectively. The antioxidant activity of SC082 was also measured by using 2,2-diphenyl-l-picryl-hydrazyl (DPPH) free radical. The DPPH radical scavenging was slightly increased in a dose-dependent manner.
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자연과학대학 > Department of Pharmaceutical Engineering > Journal Articles

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