TY - JOUR
T1 - Modification of optimal pH in l-arabinose isomerase from Geobacillus stearothermophilus for d-galactose isomerization
AU - Oh, Deok Kun
AU - Oh, Hyo Jung
AU - Kim, Hye Jung
AU - Cheon, Jina
AU - Kim, Pil
PY - 2006/12
Y1 - 2006/12
N2 - l-Arabinose isomerase from Geobacillus stearothermophilus (GSAI; EC 5.3.1.4) has been genetically evolved to increase the reaction rate toward d-galactose, which is not a natural substrate. To change the optimal pH of GSAI for d-galactose isomerization (pH optimum at 8.5), we investigated the single point mutations influencing the activity based on the sequences of the previously evolved enzymes. Among the seven point mutations found in the evolved enzymes, mutations at Val408 and Asn475 were determined to be highly influential mutation points for d-galactose isomerization activity. A random mutation was introduced into sites Val408 and Asn475 (X408V and X475N), and candidates were screened based on non-optimal pH conditions. Among the mutations of X408V and X475N, mutations of Q408V and R408V were selected. The optimal pH of the both mutations Q408V and R408V was shifted to pH 7.5. At the shifted optimal pH, the d-galactose isomerization activities of Q408V and R408V were 60 and 30% higher than that of the wild type at pH 8.5, respectively.
AB - l-Arabinose isomerase from Geobacillus stearothermophilus (GSAI; EC 5.3.1.4) has been genetically evolved to increase the reaction rate toward d-galactose, which is not a natural substrate. To change the optimal pH of GSAI for d-galactose isomerization (pH optimum at 8.5), we investigated the single point mutations influencing the activity based on the sequences of the previously evolved enzymes. Among the seven point mutations found in the evolved enzymes, mutations at Val408 and Asn475 were determined to be highly influential mutation points for d-galactose isomerization activity. A random mutation was introduced into sites Val408 and Asn475 (X408V and X475N), and candidates were screened based on non-optimal pH conditions. Among the mutations of X408V and X475N, mutations of Q408V and R408V were selected. The optimal pH of the both mutations Q408V and R408V was shifted to pH 7.5. At the shifted optimal pH, the d-galactose isomerization activities of Q408V and R408V were 60 and 30% higher than that of the wild type at pH 8.5, respectively.
KW - Galactose isomerization
KW - Geobacillus stearothermophilus
KW - l-Arabinose isomerase
KW - Optimal pH shift
KW - Tagatose
UR - http://www.scopus.com/inward/record.url?scp=33750616739&partnerID=8YFLogxK
U2 - 10.1016/j.molcatb.2006.06.015
DO - 10.1016/j.molcatb.2006.06.015
M3 - Article
AN - SCOPUS:33750616739
SN - 1381-1177
VL - 43
SP - 108
EP - 112
JO - Journal of Molecular Catalysis - B Enzymatic
JF - Journal of Molecular Catalysis - B Enzymatic
IS - 1-4
ER -