Synthesis of an asparagine-linked heptasaccharide -: Basic structure of N-glycans

被引:0
作者
Chiesa, MV [1 ]
Schmidt, RR [1 ]
机构
[1] Univ Konstanz, Fachbereich Chem, D-78457 Constance, Germany
关键词
oligosaccharides; N-glycans; synthetic methods; glycosylations; trichloroacetimidates;
D O I
暂无
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Gal beta>(*) over bar * (1-4)GlcNAc beta>(*) over bar * (1-2)Man alpha>(*) over bar * (1-3)[Man alpha>(*) over bar * (1-6)]Man beta>(*) over bar * (1-4)-GlcNAc beta>(*) over bar * (1-N)Asn (1) was disconnected into building blocks 2-6. N-Dimethylmaleoyl (DMM) protected glucosamine 3 was readily obtained from glucosamine. Transformation of 3 into 4-O-unprotected glucosamine derivatives 9, 14, and 18 furnished the intermediates required for the incorporation of the three differently linked glucosamine residues. Thus, disaccharide 20 was obtained from acceptor 9 and glucosyl donor 19 and converted into protected Man beta>(*) over bar * (1-4)GlcNAc disaccharide donor 5 by inversion of the configuration at C-2 of the glucose residue. Glycosylation of acceptor 18 with known galactosyl donor 26 afforded protected lactosamine donor 6. The synthesis of asparagine building block 2 and of mannosyl donor 4 has already been reported. With building blocks 2-6 in hand, the synthesis of 1 was accomplished. Glycosylation of acceptor 14 with donor 5 gave trisaccharide 29 which was transformed into acceptor 30. Treatment of 30 with glycosyl donor 4 provided tetrasaccharide intermediate 31. Its transformation into 2d-O-unprotected acceptor 33 and then reaction with disaccharide donor 6 furnished hexasaccharide 34. Removal of the 4c,6c-O-benzylidene group gave 4c,6c-O-unprotected acceptor 35 which, on glycosylation with donor 4, led to heptasaccharide 36. Replacement of the N-DMM groups by N-acetyl groups and removal of all O-acyl groups, followed by transformation of the C-la azido group into an amino group, and attachment of asparagine building block 2 led to the desired heptasaccharide beta -linked to asparagine 39. Hydrogenolysis of all O-benzyl groups afforded target molecule 1.
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页码:3541 / 3554
页数:14
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