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PubMed:11588153 JSONTXT 55 Projects

Annnotations TAB TSV DIC JSON TextAE Lectin_function IAV-Glycan

Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-48 Sentence denotes Fucosyltransferases: structure/function studies.
T1 0-48 Sentence denotes Fucosyltransferases: structure/function studies.
T1 0-48 Sentence denotes Fucosyltransferases: structure/function studies.
TextSentencer_T2 49-232 Sentence denotes Alpha3-fucosyltransferases (alpha3-FucTs) catalyze the final step in the synthesis of a range of important glycoconjugates that function in cell adhesion and lymphocyte recirculation.
T2 49-232 Sentence denotes Alpha3-fucosyltransferases (alpha3-FucTs) catalyze the final step in the synthesis of a range of important glycoconjugates that function in cell adhesion and lymphocyte recirculation.
T2 49-232 Sentence denotes Alpha3-fucosyltransferases (alpha3-FucTs) catalyze the final step in the synthesis of a range of important glycoconjugates that function in cell adhesion and lymphocyte recirculation.
TextSentencer_T3 233-378 Sentence denotes Six members of this family of enzymes have been cloned from the human genome, and their expression pattern has been shown to be highly regulated.
T3 233-378 Sentence denotes Six members of this family of enzymes have been cloned from the human genome, and their expression pattern has been shown to be highly regulated.
T3 233-378 Sentence denotes Six members of this family of enzymes have been cloned from the human genome, and their expression pattern has been shown to be highly regulated.
TextSentencer_T4 379-498 Sentence denotes Each enzyme has a unique acceptor substrate binding pattern, and each generates a unique range of fucosylated products.
T4 379-498 Sentence denotes Each enzyme has a unique acceptor substrate binding pattern, and each generates a unique range of fucosylated products.
T4 379-498 Sentence denotes Each enzyme has a unique acceptor substrate binding pattern, and each generates a unique range of fucosylated products.
TextSentencer_T5 499-725 Sentence denotes Results from a range of studies have provided information on amino acids in the FucT sequence that contribute to the differential acceptor specificity for the FucTs, and to the binding of the nucleotide sugar donor GDP-fucose.
T5 499-725 Sentence denotes Results from a range of studies have provided information on amino acids in the FucT sequence that contribute to the differential acceptor specificity for the FucTs, and to the binding of the nucleotide sugar donor GDP-fucose.
T5 499-725 Sentence denotes Results from a range of studies have provided information on amino acids in the FucT sequence that contribute to the differential acceptor specificity for the FucTs, and to the binding of the nucleotide sugar donor GDP-fucose.
TextSentencer_T6 726-959 Sentence denotes These results, in conjunction with results obtained from the analysis of the disulfide bond pattern, have provided useful clues about the spatial distribution of amino acids that influence or directly contribute to substrate binding.
T6 726-959 Sentence denotes These results, in conjunction with results obtained from the analysis of the disulfide bond pattern, have provided useful clues about the spatial distribution of amino acids that influence or directly contribute to substrate binding.
T6 726-959 Sentence denotes These results, in conjunction with results obtained from the analysis of the disulfide bond pattern, have provided useful clues about the spatial distribution of amino acids that influence or directly contribute to substrate binding.
TextSentencer_T7 960-1135 Sentence denotes This information is reviewed here, and a molecular fold prediction is presented which has been constructed based on the available information and current modeling methodology.
T7 960-1135 Sentence denotes This information is reviewed here, and a molecular fold prediction is presented which has been constructed based on the available information and current modeling methodology.
T7 960-1135 Sentence denotes This information is reviewed here, and a molecular fold prediction is presented which has been constructed based on the available information and current modeling methodology.