UPM Institutional Repository

Thermostability engineering of industrial enzymes through structure modification


Citation

Nezhad, Nima Ghahremani and Raja Abd Rahman, Raja Noor Zaliha and M. Normi, Yahaya and Oslan, Siti Nurbaya and Mohd Shariff, Fairolniza and Leow, Adam Thean Chor (2022) Thermostability engineering of industrial enzymes through structure modification. Applied Microbiology and Biotechnology, 106. 4845 - 4866. ISSN 0175-7598; ESSN:1432-0614

Abstract

Thermostability is an essential requirement of enzymes in the industrial processes to catalyze the reactions at high temperatures; thus, enzyme engineering through directed evolution, semi-rational design and rational design are commonly employed to construct desired thermostable mutants. Several strategies are implemented to fulfill enzymes’ thermostability demand including decreasing the entropy of the unfolded state through substitutions Gly → Xxx or Xxx → Pro, hydrogen bond, salt bridge, introducing two different simultaneous interactions through single mutant, hydrophobic interaction, filling the hydrophobic cavity core, decreasing surface hydrophobicity, truncating loop, aromatic-aromatic interaction and introducing positively charged residues to enzyme surface. In the current review, horizons about compatibility between secondary structures and substitutions at preferable structural positions to generate the most desirable thermostability in industrial enzymes are broadened.


Download File

Full text not available from this repository.

Additional Metadata

Item Type: Article
Divisions: Faculty of Biotechnology and Biomolecular Sciences
Publisher: Springer
Keywords: Protein engineering; Thermostability; Enzyme
Depositing User: Ms. Nuraida Ibrahim
Date Deposited: 14 Apr 2023 07:47
Last Modified: 14 Apr 2023 07:47
URI: http://psasir.upm.edu.my/id/eprint/103719
Statistic Details: View Download Statistic

Actions (login required)

View Item View Item