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Hyperthermostable mutants of Bacillus licheniformis alpha-amylase: Multiple amino acid replacements and molecular modelling
被引:59
作者:
Declerck, N
Joyet, P
Trosset, JY
Garnier, J
Gaillardin, C
机构:
[1] INAP G,CTR BIOTECHNOL AGROIND,GENET LAB,F-78850 THIVERVAL GRIGNON,FRANCE
[2] INRA,UNITE INGN PROT,F-78352 JOUY EN JOSAS,FRANCE
来源:
PROTEIN ENGINEERING
|
1995年
/
8卷
/
10期
关键词:
B-licheniformis alpha-amylase;
computer modelling;
helix packing;
hydrophobicity;
site-directed mutagenesis;
thermal stability;
tRNA suppressor;
D O I:
10.1093/protein/8.10.1029
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
We have identified previously two critical positions for the thermostability of the highly thermostable alpha-amylase from Bacillus licheniformis, We have now introduced all 19 possible amino acid residues to these two positions, His133 and Ala209. The most favourable substitutions were to Ile and Val, respectively, which both increased the half-life of the enzyme at 80 degrees C by a factor of similar to 3, At both positions a stabilizing effect of hydrophobic residues was observed, although only in the case of position 133 could a clear correlation be drawn between the hydrophobicity of the inserted amino acid and the gain in protein stability, The construction of double mutants showed a cumulative effect of the most favourable and/or deleterious substitutions. Computer modelling was used to generate a 3-D structure of the wild-type protein and to model substitutions at position 209, which lies in the conserved (alpha/beta)(8) barrel domain of alpha-amylase; Ala209 would be located at the beginning of the third helix of the barrel, in the bottom of a small cavity facing the fourth helix, The model suggests that replacement by, for example, a valine could fill this cavity and therefore increase intra- and interhelical compactness and hydrophobic interactions.
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页码:1029 / 1037
页数:9
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