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PubMed:14514716 JSONTXT 52 Projects

Annnotations TAB TSV DIC JSON TextAE Lectin_function IAV-Glycan

Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-125 Sentence denotes Statistical analysis of the protein environment of N-glycosylation sites: implications for occupancy, structure, and folding.
T1 0-125 Sentence denotes Statistical analysis of the protein environment of N-glycosylation sites: implications for occupancy, structure, and folding.
T1 0-125 Sentence denotes Statistical analysis of the protein environment of N-glycosylation sites: implications for occupancy, structure, and folding.
TextSentencer_T2 126-210 Sentence denotes We recently reported statistical analysis of structural data on glycosidic linkages.
T2 126-210 Sentence denotes We recently reported statistical analysis of structural data on glycosidic linkages.
T2 126-210 Sentence denotes We recently reported statistical analysis of structural data on glycosidic linkages.
TextSentencer_T3 211-360 Sentence denotes Here we extend this analysis to the glycan-protein linkage, and the peptide primary, secondary, and tertiary structures around N-glycosylation sites.
T3 211-360 Sentence denotes Here we extend this analysis to the glycan-protein linkage, and the peptide primary, secondary, and tertiary structures around N-glycosylation sites.
T3 211-360 Sentence denotes Here we extend this analysis to the glycan-protein linkage, and the peptide primary, secondary, and tertiary structures around N-glycosylation sites.
TextSentencer_T4 361-564 Sentence denotes We surveyed 506 glycoproteins in the Protein Data Bank crystallographic database, giving 2592 glycosylation sequons (1683 occupied) and generated a database of 626 nonredundant sequons with 386 occupied.
T4 361-564 Sentence denotes We surveyed 506 glycoproteins in the Protein Data Bank crystallographic database, giving 2592 glycosylation sequons (1683 occupied) and generated a database of 626 nonredundant sequons with 386 occupied.
T4 361-564 Sentence denotes We surveyed 506 glycoproteins in the Protein Data Bank crystallographic database, giving 2592 glycosylation sequons (1683 occupied) and generated a database of 626 nonredundant sequons with 386 occupied.
TextSentencer_T5 565-763 Sentence denotes Deviations in the expected amino acid composition were seen around occupied asparagines, particularly an increased occurrence of aromatic residues before the asparagine and threonine at position +2.
T5 565-763 Sentence denotes Deviations in the expected amino acid composition were seen around occupied asparagines, particularly an increased occurrence of aromatic residues before the asparagine and threonine at position +2.
T5 565-763 Sentence denotes Deviations in the expected amino acid composition were seen around occupied asparagines, particularly an increased occurrence of aromatic residues before the asparagine and threonine at position +2.
TextSentencer_T6 764-866 Sentence denotes Glycosylation alters the asparagine side chain torsion angle distribution and reduces its flexibility.
T6 764-866 Sentence denotes Glycosylation alters the asparagine side chain torsion angle distribution and reduces its flexibility.
T6 764-866 Sentence denotes Glycosylation alters the asparagine side chain torsion angle distribution and reduces its flexibility.
TextSentencer_T7 867-968 Sentence denotes There is an elevated probability of finding glycosylation sites in which secondary structure changes.
T7 867-968 Sentence denotes There is an elevated probability of finding glycosylation sites in which secondary structure changes.
T7 867-968 Sentence denotes There is an elevated probability of finding glycosylation sites in which secondary structure changes.
TextSentencer_T8 969-1068 Sentence denotes An 11-class taxonomy was developed to describe protein surface geometry around glycosylation sites.
T8 969-1068 Sentence denotes An 11-class taxonomy was developed to describe protein surface geometry around glycosylation sites.
T8 969-1068 Sentence denotes An 11-class taxonomy was developed to describe protein surface geometry around glycosylation sites.
TextSentencer_T9 1069-1230 Sentence denotes Thirty-three percent of the occupied sites are on exposed convex surfaces, 10% in deep recesses and 20% on the edge of grooves with the glycan filling the cleft.
T9 1069-1230 Sentence denotes Thirty-three percent of the occupied sites are on exposed convex surfaces, 10% in deep recesses and 20% on the edge of grooves with the glycan filling the cleft.
T9 1069-1230 Sentence denotes Thirty-three percent of the occupied sites are on exposed convex surfaces, 10% in deep recesses and 20% on the edge of grooves with the glycan filling the cleft.
TextSentencer_T10 1231-1320 Sentence denotes A surprisingly large number of glycosylated asparagine residues have a low accessibility.
T10 1231-1320 Sentence denotes A surprisingly large number of glycosylated asparagine residues have a low accessibility.
T10 1231-1320 Sentence denotes A surprisingly large number of glycosylated asparagine residues have a low accessibility.
TextSentencer_T11 1321-1498 Sentence denotes The incidence of aromatic amino acids brought into close contact with the glycan by the folding process is higher than their normal levels on the surface or in the protein core.
T11 1321-1498 Sentence denotes The incidence of aromatic amino acids brought into close contact with the glycan by the folding process is higher than their normal levels on the surface or in the protein core.
T11 1321-1498 Sentence denotes The incidence of aromatic amino acids brought into close contact with the glycan by the folding process is higher than their normal levels on the surface or in the protein core.
TextSentencer_T12 1499-1744 Sentence denotes These data have significant implications for control of sequon occupancy and evolutionary selection of glycosylation sites and are discussed in relation to mechanisms of protein fold stabilization and regional quality control of protein folding.
T12 1499-1744 Sentence denotes These data have significant implications for control of sequon occupancy and evolutionary selection of glycosylation sites and are discussed in relation to mechanisms of protein fold stabilization and regional quality control of protein folding.
T12 1499-1744 Sentence denotes These data have significant implications for control of sequon occupancy and evolutionary selection of glycosylation sites and are discussed in relation to mechanisms of protein fold stabilization and regional quality control of protein folding.
TextSentencer_T13 1745-1922 Sentence denotes Hydrophobic protein-glycan interactions and the low accessibility of glycosylation sites in folded proteins are common features and may be critical in mediating these functions.
T13 1745-1922 Sentence denotes Hydrophobic protein-glycan interactions and the low accessibility of glycosylation sites in folded proteins are common features and may be critical in mediating these functions.
T13 1745-1922 Sentence denotes Hydrophobic protein-glycan interactions and the low accessibility of glycosylation sites in folded proteins are common features and may be critical in mediating these functions.