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PubMed:14707486 JSONTXT

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GlyCosmos6-Glycan-Motif-Image

Id Subject Object Predicate Lexical cue image
T1 850-857 Glycan_Motif denotes glucose https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G15021LG
T2 935-942 Glycan_Motif denotes mannose https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G70323CJ
T3 1011-1018 Glycan_Motif denotes glucose https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G15021LG
T4 1064-1071 Glycan_Motif denotes mannose https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G70323CJ
T5 1076-1085 Glycan_Motif denotes galactose https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G68158BT|https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G65889KE

Glycosmos6-GlycoEpitope

Id Subject Object Predicate Lexical cue
T1 208-211 http://www.glycoepitope.jp/epitopes/AN0083 denotes Tn5

GlyCosmos6-Glycan-Motif-Structure

Id Subject Object Predicate Lexical cue
T1 850-857 https://glytoucan.org/Structures/Glycans/G15021LG denotes glucose
T2 935-942 https://glytoucan.org/Structures/Glycans/G70323CJ denotes mannose
T3 1011-1018 https://glytoucan.org/Structures/Glycans/G15021LG denotes glucose
T4 1064-1071 https://glytoucan.org/Structures/Glycans/G70323CJ denotes mannose
T5 1076-1085 https://glytoucan.org/Structures/Glycans/G65889KE denotes galactose
T6 1076-1085 https://glytoucan.org/Structures/Glycans/G68158BT denotes galactose

mondo_disease

Id Subject Object Predicate Lexical cue mondo_id
T1 573-588 Disease denotes silver staining http://purl.obolibrary.org/obo/MONDO_0018952

GlyCosmos6-CLO

Id Subject Object Predicate Lexical cue
T1 1232-1240 http://purl.obolibrary.org/obo/CLO_0001658 denotes activity

NCBITAXON

Id Subject Object Predicate Lexical cue db_id
T1 35-41 OrganismTaxon denotes peanut NCBItxid:3818
T2 51-65 OrganismTaxon denotes Bradyrhizobium NCBItxid:374
T3 89-106 OrganismTaxon denotes Bradyrhizobium sp NCBItxid:376
T4 109-116 OrganismTaxon denotes Arachis NCBItxid:3817
T5 252-258 OrganismTaxon denotes peanut NCBItxid:3818
T6 259-263 OrganismTaxon denotes root NCBItxid:1

sentences

Id Subject Object Predicate Lexical cue
TextSentencer_T1 0-73 Sentence denotes Characterization of LPS mutants of peanut specific Bradyrhizobium (GN17).
TextSentencer_T2 74-280 Sentence denotes Two mutants of Bradyrhizobium sp. (Arachis) strain GN17 having altered lipopolysaccharide (LPS) composition were isolated upon random Tn5 mutagenesis to study their binding with peanut root lectin (PRA II).
TextSentencer_T3 281-387 Sentence denotes These mutant strains designated as GN17M1 and GN17M2 produced rough colonies and showed autoagglutination.
TextSentencer_T4 388-481 Sentence denotes Flow cytometric analyses indicated that strain GN17M1 bind to PRA II with highest efficiency.
TextSentencer_T5 482-611 Sentence denotes Both the mutants synthesized only high molecular weight lipopolysaccharides as observed by silver staining of polyacrylamide gel.
TextSentencer_T6 612-757 Sentence denotes The LPSs from both the mutants cross-reacted with anti-GN17 LPS, however, GN17M1 LPS showed 3 times higher cross-reactivity as detected by ELISA.
TextSentencer_T7 758-989 Sentence denotes Carbohydrate analysis by high performance anion exchange chromatography (HPAEC) showed that glucose was the major constituent of the purified LPS from the parent strain whereas mannose appeared as major component in the GN17M2 LPS.
TextSentencer_T8 990-1128 Sentence denotes Equivalent amount of glucose and galactosamine with significant amount of mannose and galactose was the characteristics of the GN17M1 LPS.
TextSentencer_T9 1129-1273 Sentence denotes Purified LPS from GN17M1 and GN17M2 were respectively 17 and 10 times more potent inhibitors of PRA II activity than that of parent strain GN17.
TextSentencer_T10 1274-1363 Sentence denotes Similar binding efficiencies of the mutant LPS towards PRA II was also observed by ELISA.
TextSentencer_T11 1364-1482 Sentence denotes The results of this study indicate that the composition and the arrangement of the LPS are crucial for lectin binding.
T1 0-73 Sentence denotes Characterization of LPS mutants of peanut specific Bradyrhizobium (GN17).
T2 74-280 Sentence denotes Two mutants of Bradyrhizobium sp. (Arachis) strain GN17 having altered lipopolysaccharide (LPS) composition were isolated upon random Tn5 mutagenesis to study their binding with peanut root lectin (PRA II).
T3 281-387 Sentence denotes These mutant strains designated as GN17M1 and GN17M2 produced rough colonies and showed autoagglutination.
T4 388-481 Sentence denotes Flow cytometric analyses indicated that strain GN17M1 bind to PRA II with highest efficiency.
T5 482-611 Sentence denotes Both the mutants synthesized only high molecular weight lipopolysaccharides as observed by silver staining of polyacrylamide gel.
T6 612-757 Sentence denotes The LPSs from both the mutants cross-reacted with anti-GN17 LPS, however, GN17M1 LPS showed 3 times higher cross-reactivity as detected by ELISA.
T7 758-989 Sentence denotes Carbohydrate analysis by high performance anion exchange chromatography (HPAEC) showed that glucose was the major constituent of the purified LPS from the parent strain whereas mannose appeared as major component in the GN17M2 LPS.
T8 990-1128 Sentence denotes Equivalent amount of glucose and galactosamine with significant amount of mannose and galactose was the characteristics of the GN17M1 LPS.
T9 1129-1273 Sentence denotes Purified LPS from GN17M1 and GN17M2 were respectively 17 and 10 times more potent inhibitors of PRA II activity than that of parent strain GN17.
T10 1274-1363 Sentence denotes Similar binding efficiencies of the mutant LPS towards PRA II was also observed by ELISA.
T11 1364-1482 Sentence denotes The results of this study indicate that the composition and the arrangement of the LPS are crucial for lectin binding.