Model building of a thermolysin-like protease by mutagenesis
Author(s) -
Francesco Frigerio,
I. Margarit,
Renzo Nogarotto,
Guido Grandi,
Gert Vriend,
Florence J. Hardy,
Oene R. Veltman,
Gerard Venema,
Vincent G. H. Eijsink
Publication year - 1997
Publication title -
protein engineering design and selection
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.627
H-Index - 109
eISSN - 1741-0134
pISSN - 1741-0126
DOI - 10.1093/protein/10.3.223
Subject(s) - thermolysin , bacillus subtilis , mutagenesis , homology modeling , proteases , mosaicity , chemistry , homology (biology) , bacillus cereus , computational biology , mutant , biology , genetics , biochemistry , amino acid , enzyme , gene , trypsin , organic chemistry , epitaxy , bacteria , layer (electronics)
The present study concerns the use of site-directed mutagenesis experiments to optimize a three-dimensional model of the neutral protease of Bacillus subtilis (NP-sub). An initial model of NP-sub was constructed using the crystal structures of the homologous neutral proteases of Bacillus thermoproteolyticus (thermolysin) and Bacillus cereus as templates. The largest portion of NP-sub could be modelled satisfactorily, using standard techniques, but several surface-located regions could only be modelled with a high degree of uncertainty. In order to make the model more reliable in these regions a 'model building by mutagenesis' approach was adopted. Mutations were designed such that their effect on thermal stability could indicate how their local environment should be modelled. This approach provided insight in the local structure of several regions in NP-sub that were hard to model on the basis of homology with the two known structures alone.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom