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PubMed:16957091 JSONTXT 58 Projects

Annnotations TAB TSV DIC JSON TextAE Lectin_function IAV-Glycan

Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-76 Sentence denotes Rice chitinases: sugar recognition specificities of the individual subsites.
T1 0-76 Sentence denotes Rice chitinases: sugar recognition specificities of the individual subsites.
T1 0-76 Sentence denotes Rice chitinases: sugar recognition specificities of the individual subsites.
TextSentencer_T2 77-350 Sentence denotes Sugar recognition specificities of class III (OsChib1a) and class I (OsChia1cDeltaChBD) chitinases from rice, Oryza sativa L., were investigated by analyzing (1)H- and (13)C-nuclear magnetic resonance spectra of the enzymatic products from partially N-acetylated chitosans.
T2 77-350 Sentence denotes Sugar recognition specificities of class III (OsChib1a) and class I (OsChia1cDeltaChBD) chitinases from rice, Oryza sativa L., were investigated by analyzing (1)H- and (13)C-nuclear magnetic resonance spectra of the enzymatic products from partially N-acetylated chitosans.
T2 77-350 Sentence denotes Sugar recognition specificities of class III (OsChib1a) and class I (OsChia1cDeltaChBD) chitinases from rice, Oryza sativa L., were investigated by analyzing (1)H- and (13)C-nuclear magnetic resonance spectra of the enzymatic products from partially N-acetylated chitosans.
TextSentencer_T3 351-585 Sentence denotes The reducing end residue of the enzymatic products obtained by the class III enzyme was found to be exclusively acetylated, whereas both acetylated and deacetylated units were found at the nearest neighbor to the reducing end residue.
T3 351-585 Sentence denotes The reducing end residue of the enzymatic products obtained by the class III enzyme was found to be exclusively acetylated, whereas both acetylated and deacetylated units were found at the nearest neighbor to the reducing end residue.
T3 351-585 Sentence denotes The reducing end residue of the enzymatic products obtained by the class III enzyme was found to be exclusively acetylated, whereas both acetylated and deacetylated units were found at the nearest neighbor to the reducing end residue.
TextSentencer_T4 586-730 Sentence denotes Both acetylated and deacetylated units were also found at the nonreducing end residue and its nearest neighbor of the class III enzyme products.
T4 586-730 Sentence denotes Both acetylated and deacetylated units were also found at the nonreducing end residue and its nearest neighbor of the class III enzyme products.
T4 586-730 Sentence denotes Both acetylated and deacetylated units were also found at the nonreducing end residue and its nearest neighbor of the class III enzyme products.
TextSentencer_T5 731-872 Sentence denotes Thus, only subsite (-1) among the contiguous subsites (-2) to (+2) of the class III enzyme was found to be specific to an acetylated residue.
T5 731-872 Sentence denotes Thus, only subsite (-1) among the contiguous subsites (-2) to (+2) of the class III enzyme was found to be specific to an acetylated residue.
T5 731-872 Sentence denotes Thus, only subsite (-1) among the contiguous subsites (-2) to (+2) of the class III enzyme was found to be specific to an acetylated residue.
TextSentencer_T6 873-995 Sentence denotes For the class I enzyme, the reducing end residue was preferentially acetylated, although the specificity was not absolute.
T6 873-995 Sentence denotes For the class I enzyme, the reducing end residue was preferentially acetylated, although the specificity was not absolute.
T6 873-995 Sentence denotes For the class I enzyme, the reducing end residue was preferentially acetylated, although the specificity was not absolute.
TextSentencer_T7 996-1084 Sentence denotes The nearest neighbor to the acetylated reducing end residue was specifically acetylated.
T7 996-1084 Sentence denotes The nearest neighbor to the acetylated reducing end residue was specifically acetylated.
T7 996-1084 Sentence denotes The nearest neighbor to the acetylated reducing end residue was specifically acetylated.
TextSentencer_T8 1085-1304 Sentence denotes Moreover, the nonreducing end residue produced by the class I enzyme was exclusively acetylated, although there was a low but significant preference for deacetylated units at the nearest neighbor to the nonreducing end.
T8 1085-1304 Sentence denotes Moreover, the nonreducing end residue produced by the class I enzyme was exclusively acetylated, although there was a low but significant preference for deacetylated units at the nearest neighbor to the nonreducing end.
T8 1085-1304 Sentence denotes Moreover, the nonreducing end residue produced by the class I enzyme was exclusively acetylated, although there was a low but significant preference for deacetylated units at the nearest neighbor to the nonreducing end.
TextSentencer_T9 1305-1472 Sentence denotes These results suggest that the three contiguous subsites (-2), (-1), and (+1) of the class I enzyme are specific to three consecutive GlcNAc residues of the substrate.
T9 1305-1472 Sentence denotes These results suggest that the three contiguous subsites (-2), (-1), and (+1) of the class I enzyme are specific to three consecutive GlcNAc residues of the substrate.
T9 1305-1472 Sentence denotes These results suggest that the three contiguous subsites (-2), (-1), and (+1) of the class I enzyme are specific to three consecutive GlcNAc residues of the substrate.
TextSentencer_T10 1473-1714 Sentence denotes In rice plants, the target of the class I enzyme might be a consecutive GlcNAc sequence probably in the cell wall of fungal pathogen, whereas the class III enzyme might act toward an endogenous complex carbohydrate containing GlcNAc residue.
T10 1473-1714 Sentence denotes In rice plants, the target of the class I enzyme might be a consecutive GlcNAc sequence probably in the cell wall of fungal pathogen, whereas the class III enzyme might act toward an endogenous complex carbohydrate containing GlcNAc residue.
T10 1473-1714 Sentence denotes In rice plants, the target of the class I enzyme might be a consecutive GlcNAc sequence probably in the cell wall of fungal pathogen, whereas the class III enzyme might act toward an endogenous complex carbohydrate containing GlcNAc residue.