| Literature DB >> 30710583 |
Zhanghui Gu1, Jiangli Lai1, Jiahao Hang1, Chunguang Zhang1, Shujun Wang2, Yuliang Jiao3, Shu Liu4, Yaowei Fang5.
Abstract
If natural proteases are used in organic synthesis, they are often inactivated or give a low rate of reaction in non-aqueous or aqueous-organic media. Therefore, to reveal the molecular mechanism governing the stability of proteases in organic solvents and increase protease stability in those systems is of intriguing interest. In the present study, the activity and conformational changes of an organic solvent-stable protease (OSP) from Bacillus sphaericus DS11 in different concentrations of methanol were investigated by measuring fluorescence, UV-Vis spectra, circular dichroism (CD), and conducting molecular dynamics (MD) simulations. The OSP expanded with increasing methanol concentration. The methanol molecules were able to enter into the OSP, leading to microenvironmental changes around the aromatic amino acids. More hydrophobic groups were exposed to the solvents at high methanol concentrations, and the original hydrophobic interaction in the protein decreased, thus resulting in the secondary and tertiary structure change in the OSP. Our results provide helpful insight into the molecular mechanism of the OSP tolerance to organic solvent and indicate directions for future work to design and engineer proteases that are stable at high organic solvent concentrations.Entities:
Keywords: Circular dichroism; Fluorescence spectra; Molecular dynamics simulations; Organic solvent-stable protease; UV–Vis spectra
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Year: 2019 PMID: 30710583 DOI: 10.1016/j.ijbiomac.2019.01.196
Source DB: PubMed Journal: Int J Biol Macromol ISSN: 0141-8130 Impact factor: 6.953