[期刊论文]


Biophysical characterization of mutants of Bacillus subtilis lipase evolved for thermostability: Factors contributing to increased activity retention

作   者:
Wojciech Augustyniak;Agnieszka A. Brzezinska;Tjaard Pijning;Hans Wienk;Rolf Boelens;Bauke W. Dijkstra;Manfred T. Reetz;

出版年:2012

页     码:487 - 497
出版社:John Wiley & Sons, Ltd.


摘   要:

Previously, Lipase A from Bacillus subtilis was subjected to in vitro directed evolution using iterative saturation mutagenesis, with randomization sites chosen on the basis of the highest B-factors available from the crystal structure of the wild-type (WT) enzyme. This provided mutants that, unlike WT enzyme, retained a large part of their activity after heating above 65°C and cooling down. Here, we subjected the three best mutants along with the WT enzyme to biophysical and biochemical characterization. Combining thermal inactivation profiles, circular dichroism, X-ray structure analyses and NMR experiments revealed that mutations of surface amino acid residues counteract the tendency of Lipase A to undergo precipitation under thermal stress. Reduced precipitation of the unfolding intermediates rather than increased conformational stability of the evolved mutants seems to be responsible for the activity retention.



关键字:

lipase;directed evolution;iterative saturation mutagenesis;thermal inactivation;aggregation


所属期刊
Protein Science
ISSN: 0961-8368
来自:John Wiley & Sons, Ltd.