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1 syl residues of N-acetyllactosamine close to nonreducing terminals.
2 , which preferentially binds to a cluster of nonreducing terminal alpha1,3-linked mannosyl residues,
3  Mtb LAM-methylthioxylose (MTX), adorned the nonreducing terminal arabinan of these LAM species.
4 rom additional favorable interactions of the nonreducing terminal galactose, as well as of the fucose
5 llactosamine antenane, neuraminic acids, and nonreducing terminal GlcNAc monosaccharides, commonly su
6 ulfotransferases can transfer sulfate to the nonreducing terminal GlcNAc of short carbohydrate substr
7 thod, which revealed that it was composed of nonreducing terminal glucopyranosyl, 6-linked glucopyran
8 nd of beta(1-->6)-glucan is connected to the nonreducing terminal glucose of beta(1-->3)-glucan throu
9        beta-Glucuronidase was used to remove nonreducing-terminal glucuronic acid residues from oligo
10  branched, primarily with double branches of nonreducing terminal l-arabinosyl units at the O-2 and O
11 I preferentially cleaves exolytically at the nonreducing terminal linkage of the HLGAG chain, althoug
12  to Ca(2+) in a primary binding site and the nonreducing terminal mannose residue occupying an adjace
13      Here, we evaluated the influence of the nonreducing terminal monosaccharide on the serum antibod
14 proteins are involved in the assembly of the nonreducing terminal motif of arabinogalactan and EmbC i
15 beta1,4-galactosylation is the presence of a nonreducing terminal N-acetylglucosamine; however, this
16 bits highest specificity and affinity toward nonreducing terminal Neu5Acalpha2, 6Galbeta1,4Glc/GlcNAc
17 osamine-4-sulfate (GalNAc-4S) residue at the nonreducing terminal of GAG structures.
18 d to glycoproteins that bear these sugars in nonreducing terminal positions.
19 inding patterns, confirmed the presence of a nonreducing terminal repeating LacNAc ((Galbeta1-->4GlcN
20 onal immunoglobulin A (IgA) specific for the nonreducing terminal residue of Ogawa O-polysaccharide (
21   For IgG1s S-20-4, A-20-6, and IgA 2D6, the nonreducing terminal residue of Ogawa O-PS is the domina
22                                          The nonreducing terminal residue of the pentasaccharide side
23 The rhamnogalacturonan I has numerous single nonreducing terminal residues of the rare sugar l-galact
24 id chromatography to separate and quantitate nonreducing terminal structures, in addition to internal
25                   The previously undescribed nonreducing terminal sugar (i.e. 2-O-methyl-4-(3-hydroxy
26 dase digestion confirmed the identity of the nonreducing terminal sugar of the disaccharide and estab