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UV mutagenesis for lipase overproduction from Bacillus cereus ATA179, nutritional optimization, characterization and its usability in the detergent industry

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Irianto, Vichi Sicha
Çetinkaya, Aynur Aybey

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Irianto, Vichi Sicha
Demirkan, Elif
Çetinkaya, Aynur Aybey

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Taylor

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In this study, the wild-type Bacillus cereus ATA179 was mutagenized by random UV mutagenesis to increase lipase production. The mutant with maximum lipolytic activity was named Bacillus cereus EV4. The mutant strain (10.6 U/mL at 24 h) produced 60% more enzyme than the wild strain (6.6 U/mL at 48 h). Nutritional factors on lipase production were investigated. Sucrose was the best carbon source, (NH4)(2)HPO4 was the best nitrogen source and CuSO4 was the best metal ion source. Mutant EV4 showed a 32% increase in lipase production in the modified medium. The optimum temperature and pH were found to be 60 degrees C and 7.0, respectively. CuSO4, CaCl2, LiSO4, KCl, BaCl2, and Tween 20 had an activating effect on the enzyme. V-max and K-m values were found to be 17.36 U/mL and 0.036 mM, respectively. The molecular weight was determined as 28.2 kDa. The activity of lipase was found to be stable up to 60 days at 20 degrees C, 75 days at 4 degrees C, and 90 days at -20 degrees C. The potential of lipase in the detergent industry was investigated. The enzyme was not affected by detergent additives but was effective in removing stains in fabrics contaminated with oily substances.

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Extracellular lipase, Alkaline Lipase, Purification , Immobilization , Expression , Strain, Bacillus, Detergent additives, Enzymatic properties, Lipase, Ultra violet (UV) rays, Science & technology, Life sciences & biomedicine, Biochemical research methods, Biochemistry &molecular biology, Biotechnology & applied microbiology, Biochemistry & molecular biology, Biotechnology & applied microbiology

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