TY - JOUR
T1 - Preparation and characterization of EGCase I, applicable to the comprehensive analysis of GSLs, using a rhodococcal expression system
AU - Ishibashi, Yohei
AU - Kobayashi, Utaro
AU - Hijikata, Atsushi
AU - Sakaguchi, Keishi
AU - Goda, Hatsumi M.
AU - Tamura, Tomohiro
AU - Okino, Nozomu
AU - Ito, Makoto
PY - 2012/10
Y1 - 2012/10
N2 - Endoglycoceramidase (EGCase) is a glycosidase capable of hydrolyzing the β-glycosidic linkage between the oligosaccharides and ceramides of glycosphingolipids (GSLs). Three molecular species of EGCase differing in specificity were found in the culture fluid of Rhodococcus equi (formerly Rhodococcus sp. M-750) and designated EGCase I, II, and III. This study describes the molecular cloning of EGCase I and characterization of the recombinant enzyme, which was highly expressed in a rhodococcal expression system using Rhodococcus erythropolis. Kinetic analysis revealed the turnover number (kcat) (kcat) of the recombinant EGCase I to be 22-and 1,200-fold higher than that of EGCase II toward GM1a and Gb3Cer, respectively, although the Km of both enzymes was almost the same for these substrates. Comparison of the three-dimensional structure of EGCase I (model) and EGCase II (crystal) indicated that a flexible loop hangs over the catalytic cleft of EGCase II but not EGCase I. Deletion of the loop from EGCase II increased the kcat of the mutant enzyme, suggesting that the loop is a critical factor affecting the turnover of substrates and products in the catalytic region. Recombinant EGCase I exhibited broad specificity and good reaction efficiency compared with EGCase II, making EGCase I well-suited to a comprehensive analysis of GSLs.
AB - Endoglycoceramidase (EGCase) is a glycosidase capable of hydrolyzing the β-glycosidic linkage between the oligosaccharides and ceramides of glycosphingolipids (GSLs). Three molecular species of EGCase differing in specificity were found in the culture fluid of Rhodococcus equi (formerly Rhodococcus sp. M-750) and designated EGCase I, II, and III. This study describes the molecular cloning of EGCase I and characterization of the recombinant enzyme, which was highly expressed in a rhodococcal expression system using Rhodococcus erythropolis. Kinetic analysis revealed the turnover number (kcat) (kcat) of the recombinant EGCase I to be 22-and 1,200-fold higher than that of EGCase II toward GM1a and Gb3Cer, respectively, although the Km of both enzymes was almost the same for these substrates. Comparison of the three-dimensional structure of EGCase I (model) and EGCase II (crystal) indicated that a flexible loop hangs over the catalytic cleft of EGCase II but not EGCase I. Deletion of the loop from EGCase II increased the kcat of the mutant enzyme, suggesting that the loop is a critical factor affecting the turnover of substrates and products in the catalytic region. Recombinant EGCase I exhibited broad specificity and good reaction efficiency compared with EGCase II, making EGCase I well-suited to a comprehensive analysis of GSLs.
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U2 - 10.1194/jlr.D028951
DO - 10.1194/jlr.D028951
M3 - Article
C2 - 22798689
AN - SCOPUS:84866155016
SN - 0022-2275
VL - 53
SP - 2242
EP - 2251
JO - Journal of Lipid Research
JF - Journal of Lipid Research
IS - 10
ER -