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PubMed:24415556 JSONTXT 50 Projects

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Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-93 Sentence denotes Both isoforms of human UDP-glucose:glycoprotein glucosyltransferase are enzymatically active.
T1 0-93 Sentence denotes Both isoforms of human UDP-glucose:glycoprotein glucosyltransferase are enzymatically active.
T1 0-93 Sentence denotes Both isoforms of human UDP-glucose:glycoprotein glucosyltransferase are enzymatically active.
TextSentencer_T2 94-278 Sentence denotes Being recognized as an important constituent of the glycoprotein folding cycle, uridine diphosphate-glucose:glycoprotein glucosyltransferase (UGGT) has been a subject of intense study.
T2 94-278 Sentence denotes Being recognized as an important constituent of the glycoprotein folding cycle, uridine diphosphate-glucose:glycoprotein glucosyltransferase (UGGT) has been a subject of intense study.
T2 94-278 Sentence denotes Being recognized as an important constituent of the glycoprotein folding cycle, uridine diphosphate-glucose:glycoprotein glucosyltransferase (UGGT) has been a subject of intense study.
TextSentencer_T3 279-382 Sentence denotes Up to now, it is two isoforms, UGGT1 and 2 have been identified, which share ∼ 50% amino acid identity.
T3 279-382 Sentence denotes Up to now, it is two isoforms, UGGT1 and 2 have been identified, which share ∼ 50% amino acid identity.
T3 279-382 Sentence denotes Up to now, it is two isoforms, UGGT1 and 2 have been identified, which share ∼ 50% amino acid identity.
TextSentencer_T4 383-649 Sentence denotes UGGT1 is a well-documented enzyme which functions as a folding sensor in the endoplasmic reticulum, by the virtue of its ability to transfer a glucose residue to non-glucosylated high-mannose-type glycans of immature glycoproteins exhibiting non-native conformation.
T4 383-649 Sentence denotes UGGT1 is a well-documented enzyme which functions as a folding sensor in the endoplasmic reticulum, by the virtue of its ability to transfer a glucose residue to non-glucosylated high-mannose-type glycans of immature glycoproteins exhibiting non-native conformation.
T4 383-649 Sentence denotes UGGT1 is a well-documented enzyme which functions as a folding sensor in the endoplasmic reticulum, by the virtue of its ability to transfer a glucose residue to non-glucosylated high-mannose-type glycans of immature glycoproteins exhibiting non-native conformation.
TextSentencer_T5 650-845 Sentence denotes On the other hand, direct evidence to support the glucosyltransferase activity of UGGT2 has been lacking, leaving it unclear as to whether it has any function in the glycoprotein folding process.
T5 650-845 Sentence denotes On the other hand, direct evidence to support the glucosyltransferase activity of UGGT2 has been lacking, leaving it unclear as to whether it has any function in the glycoprotein folding process.
T5 650-845 Sentence denotes On the other hand, direct evidence to support the glucosyltransferase activity of UGGT2 has been lacking, leaving it unclear as to whether it has any function in the glycoprotein folding process.
TextSentencer_T6 846-997 Sentence denotes This study aimed to reveal the property of human UGGT2 by using synthetic substrates such as fluorescently labeled glycans and N-glycosylated proteins.
T6 846-997 Sentence denotes This study aimed to reveal the property of human UGGT2 by using synthetic substrates such as fluorescently labeled glycans and N-glycosylated proteins.
T6 846-997 Sentence denotes This study aimed to reveal the property of human UGGT2 by using synthetic substrates such as fluorescently labeled glycans and N-glycosylated proteins.
TextSentencer_T7 998-1251 Sentence denotes The analysis, for the first time, revealed the glucosyltransferase activity of UGGT2, whose specificity was shown to be quite similar to UGGT1, in terms of both glycan specificity and preferential recognition of proteins having non-native conformations.
T7 998-1251 Sentence denotes The analysis, for the first time, revealed the glucosyltransferase activity of UGGT2, whose specificity was shown to be quite similar to UGGT1, in terms of both glycan specificity and preferential recognition of proteins having non-native conformations.
T7 998-1251 Sentence denotes The analysis, for the first time, revealed the glucosyltransferase activity of UGGT2, whose specificity was shown to be quite similar to UGGT1, in terms of both glycan specificity and preferential recognition of proteins having non-native conformations.
TextSentencer_T8 1252-1393 Sentence denotes Finally, Sep15 was found to form the heterodimeric complex with both isoforms of UGGT and markedly enhanced its glucosyltransferase activity.
T8 1252-1393 Sentence denotes Finally, Sep15 was found to form the heterodimeric complex with both isoforms of UGGT and markedly enhanced its glucosyltransferase activity.
T8 1252-1393 Sentence denotes Finally, Sep15 was found to form the heterodimeric complex with both isoforms of UGGT and markedly enhanced its glucosyltransferase activity.