CO-production of thermostable, calcium-independent α- amylase and alkali-metallo protease from newly isolated bacillus licheniformis DV3

  • Matpan Bekler Fatma Dicle University, Turkey
  • Acer Ömer Dicle University, Turkey
  • Güven Kemal Dicle University, Turkey
Keywords: Bacillus licheniformis, α-amylase, co-production, protease

Abstract

Extracellular thermostable α-amylase and protease from one fermentation of a newly isolated thermophilic Bacillus licheniformis DV3 was studied. The optimum pH and temperature for the enzyme activity were 7.0 and 70°C for the α-amylase, while it was 10.0 and 50°C, respectively for the protease activity. Different carbon and nitrogen sources were investigated for the first time in terms of their effect on the co-production of extracellular thermostable α- amylase and protease. Among carbon and nitrogen sources, soluble starch and urea increased both α-amylase and protease production to a great extend. The α-amylase activity was enhanced in the presence of Mn2+, inhibition was obtained in the presence of Ca2+and Cu2, and it was strongly inhibited by Hg2+. The protease activity was increase in the presence of Ca2+ and Zn2+, whereas the activity was decreased by Mn2+and Hg2+, and the activity inhibited by EDTA and PMSF.

Published
2015-06-02
How to Cite
1.
Fatma MB, Ömer A, Kemal G. CO-production of thermostable, calcium-independent α- amylase and alkali-metallo protease from newly isolated bacillus licheniformis DV3. Innovative Romanian Food Biotechnology [Internet]. 2Jun.2015 [cited 29Apr.2024];(16):21-0. Available from: https://www.gup.ugal.ro/ugaljournals/index.php/IFRB/article/view/3499
Section
Articles

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