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Biotechnol Lett ; 40(1): 189-196, 2018 Jan.
Article in English | MEDLINE | ID: mdl-29038928

ABSTRACT

OBJECTIVES: A bacterial halotolerant enzyme was characterized to understand the molecular mechanism of salt adaptation and to explore its protein engineering potential. RESULTS: Halotolerant serine protease (Apr_No16) from a newly isolated Bacillus subtilis strain no. 16 was characterized. Multiple alignments with previously reported non-halotolerant proteases, including subtilisin Carlsberg, indicated that Apr_No16 has eight acidic or polar amino acid residues that are replaced by nonpolar amino acids in non-halotolerant proteases. Those residues were hypothesized to be one of the primary contributors to salt adaptation. An eightfold mutant substituted with Ala residues exhibited 1.2- and 1.8-fold greater halotolerance at 12.5% (w/v) NaCl than Apr_No16 and Carlsberg, respectively. Amino acid substitution notably shifted the theoretical pI of the eightfold mutant, from 6.33 to 9.23, compared with Apr_No16. The resulting protein better tolerated high salt conditions. CONCLUSIONS: Changing the pI of a bacterial serine protease may be an effective strategy to improve the enzyme's halotolerance.


Subject(s)
Bacillus subtilis/enzymology , DNA Mutational Analysis , Enzyme Inhibitors/metabolism , Serine Proteases/genetics , Serine Proteases/metabolism , Sodium Chloride/metabolism , Amino Acid Substitution , Isoelectric Point , Sequence Alignment , Sequence Analysis, DNA , Serine Proteases/chemistry
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