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동의어 포함
Metallic and non-metallic isomerases can be used to produce
commercially important monosaccharides. To determine
which category of isomerase is more suitable as a template
for directed evolution to improve enzymes for galactose
isomerization, L-arabinose isomerase from Escherichia coli
(ECAI; E.C. 5.3.1.4) and tagatose-6-phosphate isomerase
from Staphylococcus aureus (SATI; E.C. 5.3.1.26) were
chosen as models of a metallic and non-metallic isomerase,
respectively. Random mutations were introduced into the
genes encoding ECAI and SATI at the same rate, resulting
in the generation of 515 mutants of each isomerase. The
isomerization activity of each of the mutants toward a
non-natural substrate (galactose) was then measured. With
an average mutation rate of 0.2 mutations/kb, 47.5% of
the mutated ECAIs showed an increase in activity compared
with wild-type ECAI, and the remaining 52.5% showed a
decrease in activity. Among the mutated SATIs, 58.6%
showed an increase in activity, whereas 41.4% showed a
decrease in activity. Mutant clones showing a significant
change in relative activity were sequenced and specific
increases in activity were measured. The maximum increase
in activity achieved by mutation of ECAI was 130%, and
that for SATI was 190%. Based on these results, the
characteristics of the different isomerases are discussed in
terms of their usefulness for directed evolution of nonnatural
substrate isomerization.| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Asboth, B. and G. Naray-Szabo. 2000. Mechanism of action of D-xylose isomerase. Curr. Protein Pept. Sci. 1: 237-254. | 미소장 |
| 2 | Molecular and industrial aspects of glucose isomerase. ![]() |
미소장 |
| 3 | Biotechnology Journal 3/2008 ![]() |
미소장 |
| 4 | A new spectrophotometric method for the detection and determination of keto sugars and trioses. ![]() |
미소장 |
| 5 | Kim, P. 2004. Current studies on biological tagatose production using L-arabinose isomerase: A review and future perspective. Appl. Microbiol. Biotechnol. 65: 243-249. | 미소장 |
| 6 | Improvement of tagatose conversion rate by genetic evolution of thermostable galactose isomerase. ![]() |
미소장 |
| 7 | Cobalt proteins. ![]() |
미소장 |
| 8 | Distinct metal dependence for catalytic and structural functions in the L-arabinose isomerases from the mesophilic Bacillus halodurans and the thermophilic Geobacillus stearothermophilus. ![]() |
미소장 |
| 9 | Crystal Structure of Escherichia coliL-Arabinose Isomerase (ECAI), The Putative Target of Biological Tagatose Production ![]() |
미소장 |
| 10 | Substrate Variety of a Non-metal Dependent Tagatose-6-phosphate Isomerase from Staphylococcusaureus. | 소장 |
| 11 | Oh, D. K., H. J. Oh, H. J. Kim, J. Cheon, and P. Kim. 2006. Modification of optimal pH in L-arabinose isomerase from Geobacillus stearothermophilus for D-galactose isomerization. J. Mol. Cat. B Enz. 43: 108-112. | 미소장 |
| 12 | Probing the essential catalytic residues and substrate affinity in the thermoactive Bacillus stearothermophilus US100 L-arabinose isomerase by site-directed mutagenesis. ![]() |
미소장 |
| 13 | Bioconversion of D-galactose into D-tagatose by expression of L-arabinose isomerase. ![]() |
미소장 |
| 14 | Phosphoglucose Isomerase: A Ketol Isomerase with Aldol C2-Epimerase Activity ![]() |
미소장 |
| 15 | Molecular determinants of xylose isomerase thermal stability and activity: analysis of thermozymes by site-directed mutagenesis. ![]() |
미소장 |
| 16 | Increasing the thermostability of D-xylose isomerase by introduction of a proline into the turn of a random coil. ![]() |
미소장 |
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