TY - JOUR
T1 - Chemo-enzymatic synthesis of eel calcitonin glycosylated at two sites with the same and different carbohydrate structures
AU - Haneda, Katsuji
AU - Takeuchi, Midori
AU - Tagashira, Mizuka
AU - Inazu, Toshiyuki
AU - Toma, Kazunori
AU - Isogai, Yukihiro
AU - Hori, Masayuki
AU - Kobayashi, Kazuo
AU - Takeuchi, Makoto
AU - Takegawa, Kaoru
AU - Yamamoto, Kenji
N1 - Funding Information:
This work was supported, in part, by Grants-in Aid Scientific Research (No. 11650825) from the Ministry of Education, Science and Culture of Japan, and the Research Development Projects of Industrial Science and Technology Foundation Program supported by NEDO (New-Energy and Industrial Technology Development Organization). We thank Prof. K. Kuwajima and Dr. M. Arai of the University of Tokyo for their helpful advice and use of a CD spectrometer. Hypocalcemic activity was measured at the Toyo Kensa Center.
PY - 2006/2/6
Y1 - 2006/2/6
N2 - Naturally occurring glycopeptides and glycoproteins usually contain more than one glycosylation site, and the structure of the carbohydrate attached is often different from site to site. Therefore, synthetic methods for preparing peptides and proteins that are glycosylated at multiple sites, possibly with different carbohydrate structures, are needed. Here, we report a chemo-enzymatic approach for accomplishing this. Complex-type oligosaccharides were introduced to the calcitonin derivatives that contained two N-acetyl-d-glucosamine (GlcNAc) residues at different sites by treatment with Mucor hiemalis endo-β-N-acetylglucosaminidase. Using this enzymatic transglycosylation reaction, three glycopeptides were produced, a calcitonin derivative with the same complex-type carbohydrate at two sites, and two calcitonin derivatives each with one complex-type carbohydrate and one GlcNAc. Starting from the derivatives with one complex-type carbohydrate and one GlcNAc, a high-mannose-type oligosaccharide was successfully transferred to the remaining GlcNAc using another endo-β-N-acetylglucosaminidase from Arthrobacter protophormiae. Thus, we were able to obtain glycopeptides containing not only two complex-type carbohydrates, but also both complex and high-mannose-type oligosaccharides in a single molecule. Using the resultant glycosylated calcitonin derivatives, the effects of di-N-glycosylation on the structure and the activity of calcitonin were studied. The effect appeared to be predictable from the results of mono-N-glycosylated calcitonin derivatives.
AB - Naturally occurring glycopeptides and glycoproteins usually contain more than one glycosylation site, and the structure of the carbohydrate attached is often different from site to site. Therefore, synthetic methods for preparing peptides and proteins that are glycosylated at multiple sites, possibly with different carbohydrate structures, are needed. Here, we report a chemo-enzymatic approach for accomplishing this. Complex-type oligosaccharides were introduced to the calcitonin derivatives that contained two N-acetyl-d-glucosamine (GlcNAc) residues at different sites by treatment with Mucor hiemalis endo-β-N-acetylglucosaminidase. Using this enzymatic transglycosylation reaction, three glycopeptides were produced, a calcitonin derivative with the same complex-type carbohydrate at two sites, and two calcitonin derivatives each with one complex-type carbohydrate and one GlcNAc. Starting from the derivatives with one complex-type carbohydrate and one GlcNAc, a high-mannose-type oligosaccharide was successfully transferred to the remaining GlcNAc using another endo-β-N-acetylglucosaminidase from Arthrobacter protophormiae. Thus, we were able to obtain glycopeptides containing not only two complex-type carbohydrates, but also both complex and high-mannose-type oligosaccharides in a single molecule. Using the resultant glycosylated calcitonin derivatives, the effects of di-N-glycosylation on the structure and the activity of calcitonin were studied. The effect appeared to be predictable from the results of mono-N-glycosylated calcitonin derivatives.
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U2 - 10.1016/j.carres.2005.11.015
DO - 10.1016/j.carres.2005.11.015
M3 - Article
C2 - 16343462
AN - SCOPUS:29944447554
SN - 0008-6215
VL - 341
SP - 181
EP - 190
JO - Carbohydrate Research
JF - Carbohydrate Research
IS - 2
ER -