Secretory expression, functional characterization, and molecular genetic analysis of novel halo-solvent-tolerant protease from Bacillus gibsonii

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Abstract

A novel protease gene from Bacillus gibsonii, aprBG, was cloned, expressed in B. subtilis, and characterized. High-level expression of aprBG was achieved in the recombinant strain when a junction was present between the promoter and the target gene. The purified recombinant enzyme exhibited similar N-terminal sequences and catalytic properties to the native enzyme, including high affinity and hydrolytic efficiency toward various substrates and a superior performance when exposed to various metal ions, surfactants, oxidants, and commercial detergents. AprBG was remarkably stable in 50% organic solvents and retained 100% activity and stability in 0-4 M NaCl, which is better than the characteristics of previously reported proteases. AprBG was most closely related to the high-alkaline proteases of the subtilisin family with a 57-68% identity. The secretion and maturation mechanism of AprBG was dependent on the enzyme activity, as analyzed by site-directed mutagenesis. Thus, when taken together, the results revealed that the halo-solvent-tolerant protease AprBG displays significant activity and stability under various extreme conditions, indicating its potential for use in many biotechnology applications. © 2014 by The Korean Society for Microbiology and Biotechnology.

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APA

Deng, A., Zhang, G., Shi, N., Wu, J., Lu, F., & Wen, T. (2014). Secretory expression, functional characterization, and molecular genetic analysis of novel halo-solvent-tolerant protease from Bacillus gibsonii. Journal of Microbiology and Biotechnology, 24(2), 197–208. https://doi.org/10.4014/jmb.1308.08094

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