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Cited 9 time in webofscience Cited 10 time in scopus
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DNA Shuffling of aprE Genes to Increase Fibrinolytic Activity and Thermostabilityopen accessDNA Shuffling of aprE Genes to Increase Fibrinolytic Activity and Thermostability

Other Titles
DNA Shuffling of aprE Genes to Increase Fibrinolytic Activity and Thermostability
Authors
Yao ZhuangJeon Hye SungYoo Ji YeonKang Yun JiKim Min JaeKim Tae Jin김정환
Issue Date
Jun-2022
Publisher
한국미생물·생명공학회
Keywords
DNA shuffling; aprE; Bacillus subtilis; fibrinolytic enzymes
Citation
Journal of Microbiology and Biotechnology, v.32, no.6, pp 800 - 807
Pages
8
Indexed
SCIE
SCOPUS
KCI
Journal Title
Journal of Microbiology and Biotechnology
Volume
32
Number
6
Start Page
800
End Page
807
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/1183
DOI
10.4014/jmb.2202.02017
ISSN
1017-7825
1738-8872
Abstract
Four aprE genes encoding alkaline serine proteases from B. subtilis strains were used as template genes for family gene shuffling. Shuffled genes obtained by DNase I digestion followed by consecutive primerless and regular PCR reactions were ligated with pHY300PLK, an E. coli-Bacillus shuttle vector. The ligation mixture was introduced into B. subtilis WB600 and one transformant (FSM4) showed higher fibrinolytic activity. DNA sequencing confirmed that the shuffled gene (aprEFSM4) consisted of DNA mostly originated from either aprEJS2 or aprE176 in addition to some DNA from either aprE3-5 or aprESJ4. Mature AprEFSM4 (275 amino acids) was different from mature AprEJS2 in 4 amino acids and mature AprE176 in 2 amino acids. aprEFSM4 was overexpressed in E. coli BL21 (DE3) by using pET26b(+) and recombinant AprEFSM4 was purified. The optimal temperature and pH of AprEFSM4 were similar to those of parental enzymes. However, AprEFM4 showed better thermostability and fibrinogen hydrolytic activity than the parental enzymes. The results indicated that DNA shuffling could be used to improve fibrinolytic enzymes from Bacillus sp. for industrial applications.
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