PubMed:16373355
Annnotations
GlyCosmos6-Glycan-Motif-Image
Id | Subject | Object | Predicate | Lexical cue | image |
---|---|---|---|---|---|
T1 | 1293-1304 | Glycan_Motif | denotes | chondroitin | https://api.glycosmos.org/wurcs2image/0.10.0/png/binary/G43702JT |
sentences
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 0-104 | Sentence | denotes | Proteoglycan mechanics studied by single-molecule force spectroscopy of allotypic cell adhesion glycans. |
T2 | 105-260 | Sentence | denotes | Early Metazoans had to evolve the first cell adhesion system addressed to maintaining stable interactions between cells constituting different individuals. |
T3 | 261-407 | Sentence | denotes | As the oldest extant multicellular animals, sponges are good candidates to have remnants of the molecules responsible for that crucial innovation. |
T4 | 408-613 | Sentence | denotes | Sponge cells associate in a species-specific process through multivalent calcium-dependent interactions of carbohydrate structures on an extracellular membrane-bound proteoglycan termed aggregation factor. |
T5 | 614-780 | Sentence | denotes | Single-molecule force spectroscopy studies of the mechanics of aggregation factor self-binding indicate the existence of intermolecular carbohydrate adhesion domains. |
T6 | 781-963 | Sentence | denotes | A 200-kDa aggregation factor glycan (g200) involved in cell adhesion exhibits interindividual differences in size and epitope content which suggest the existence of allelic variants. |
T7 | 964-1062 | Sentence | denotes | We have purified two of these g200 distinct forms from two individuals of the same sponge species. |
T8 | 1063-1155 | Sentence | denotes | Comparison of allotypic versus isotypic g200 binding forces reveals significant differences. |
T9 | 1156-1313 | Sentence | denotes | Surface plasmon resonance measurements show that g200 self-adhesion is much stronger than its binding to other unrelated glycans such as chondroitin sulfate. |
T10 | 1314-1505 | Sentence | denotes | This adhesive specificity through multiple carbohydrate binding domains is a type of cooperative interaction that can contribute to explain some functions of modular proteoglycans in general. |
T11 | 1506-1787 | Sentence | denotes | From our results it can be deduced that the binding strength/surface area between two aggregation factor molecules is comparable with that of focal contacts in vertebrate cells, indicating that strong carbohydrate-based cell adhesions evolved at the very start of Metazoan history. |
Glycosmos6-MAT
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 1666-1676 | http://purl.obolibrary.org/obo/MAT_0000373 | denotes | vertebrate |
GlyCosmos6-Glycan-Motif-Structure
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 1293-1304 | https://glytoucan.org/Structures/Glycans/G43702JT | denotes | chondroitin |
Glycosmos6-GlycoEpitope
Id | Subject | Object | Predicate | Lexical cue | glyco_epitope_db_id |
---|---|---|---|---|---|
T1 | 1293-1304 | GlycoEpitope | denotes | chondroitin | http://www.glycoepitope.jp/epitopes/EP0081 |
Anatomy-MAT
Id | Subject | Object | Predicate | Lexical cue | mat_id |
---|---|---|---|---|---|
T1 | 1666-1676 | Body_part | denotes | vertebrate | http://purl.obolibrary.org/obo/MAT_0000373 |
Glycan-GlyCosmos
Id | Subject | Object | Predicate | Lexical cue | image |
---|---|---|---|---|---|
T1 | 1293-1304 | Glycan | denotes | chondroitin | https://api.glycosmos.org/wurcs2image/latest/png/binary/G43702JT |
GlyCosmos-GlycoEpitope
Id | Subject | Object | Predicate | Lexical cue | glycoepitope_id |
---|---|---|---|---|---|
T1 | 1293-1304 | http://purl.jp/bio/12/glyco/glycan#Glycan_epitope | denotes | chondroitin | http://www.glycoepitope.jp/epitopes/EP0081 |
GlyCosmos15-NCBITAXON
Id | Subject | Object | Predicate | Lexical cue | db_id |
---|---|---|---|---|---|
T1 | 282-303 | OrganismTaxon | denotes | multicellular animals | 33208 |
GlyCosmos15-UBERON
Id | Subject | Object | Predicate | Lexical cue | uberon_id |
---|---|---|---|---|---|
T1 | 545-558 | Body_part | denotes | extracellular | http://purl.obolibrary.org/obo/GO_0005576 |
T2 | 559-567 | Body_part | denotes | membrane | http://purl.obolibrary.org/obo/GO_0016020|http://purl.obolibrary.org/obo/UBERON_0000094|http://purl.obolibrary.org/obo/UBERON_0000158 |
GlyCosmos15-MAT
Id | Subject | Object | Predicate | Lexical cue | mat_id |
---|---|---|---|---|---|
T1 | 1666-1676 | Body_part | denotes | vertebrate | http://purl.obolibrary.org/obo/MAT_0000373 |
sentences
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 0-104 | Sentence | denotes | Proteoglycan mechanics studied by single-molecule force spectroscopy of allotypic cell adhesion glycans. |
T2 | 105-260 | Sentence | denotes | Early Metazoans had to evolve the first cell adhesion system addressed to maintaining stable interactions between cells constituting different individuals. |
T3 | 261-407 | Sentence | denotes | As the oldest extant multicellular animals, sponges are good candidates to have remnants of the molecules responsible for that crucial innovation. |
T4 | 408-613 | Sentence | denotes | Sponge cells associate in a species-specific process through multivalent calcium-dependent interactions of carbohydrate structures on an extracellular membrane-bound proteoglycan termed aggregation factor. |
T5 | 614-780 | Sentence | denotes | Single-molecule force spectroscopy studies of the mechanics of aggregation factor self-binding indicate the existence of intermolecular carbohydrate adhesion domains. |
T6 | 781-963 | Sentence | denotes | A 200-kDa aggregation factor glycan (g200) involved in cell adhesion exhibits interindividual differences in size and epitope content which suggest the existence of allelic variants. |
T7 | 964-1062 | Sentence | denotes | We have purified two of these g200 distinct forms from two individuals of the same sponge species. |
T8 | 1063-1155 | Sentence | denotes | Comparison of allotypic versus isotypic g200 binding forces reveals significant differences. |
T9 | 1156-1313 | Sentence | denotes | Surface plasmon resonance measurements show that g200 self-adhesion is much stronger than its binding to other unrelated glycans such as chondroitin sulfate. |
T10 | 1314-1505 | Sentence | denotes | This adhesive specificity through multiple carbohydrate binding domains is a type of cooperative interaction that can contribute to explain some functions of modular proteoglycans in general. |
T11 | 1506-1787 | Sentence | denotes | From our results it can be deduced that the binding strength/surface area between two aggregation factor molecules is comparable with that of focal contacts in vertebrate cells, indicating that strong carbohydrate-based cell adhesions evolved at the very start of Metazoan history. |
GlyCosmos15-Sentences
Id | Subject | Object | Predicate | Lexical cue |
---|---|---|---|---|
T1 | 0-104 | Sentence | denotes | Proteoglycan mechanics studied by single-molecule force spectroscopy of allotypic cell adhesion glycans. |
T2 | 105-260 | Sentence | denotes | Early Metazoans had to evolve the first cell adhesion system addressed to maintaining stable interactions between cells constituting different individuals. |
T3 | 261-407 | Sentence | denotes | As the oldest extant multicellular animals, sponges are good candidates to have remnants of the molecules responsible for that crucial innovation. |
T4 | 408-613 | Sentence | denotes | Sponge cells associate in a species-specific process through multivalent calcium-dependent interactions of carbohydrate structures on an extracellular membrane-bound proteoglycan termed aggregation factor. |
T5 | 614-780 | Sentence | denotes | Single-molecule force spectroscopy studies of the mechanics of aggregation factor self-binding indicate the existence of intermolecular carbohydrate adhesion domains. |
T6 | 781-963 | Sentence | denotes | A 200-kDa aggregation factor glycan (g200) involved in cell adhesion exhibits interindividual differences in size and epitope content which suggest the existence of allelic variants. |
T7 | 964-1062 | Sentence | denotes | We have purified two of these g200 distinct forms from two individuals of the same sponge species. |
T8 | 1063-1155 | Sentence | denotes | Comparison of allotypic versus isotypic g200 binding forces reveals significant differences. |
T9 | 1156-1313 | Sentence | denotes | Surface plasmon resonance measurements show that g200 self-adhesion is much stronger than its binding to other unrelated glycans such as chondroitin sulfate. |
T10 | 1314-1505 | Sentence | denotes | This adhesive specificity through multiple carbohydrate binding domains is a type of cooperative interaction that can contribute to explain some functions of modular proteoglycans in general. |
T11 | 1506-1787 | Sentence | denotes | From our results it can be deduced that the binding strength/surface area between two aggregation factor molecules is comparable with that of focal contacts in vertebrate cells, indicating that strong carbohydrate-based cell adhesions evolved at the very start of Metazoan history. |
GlyCosmos15-Glycan
Id | Subject | Object | Predicate | Lexical cue | image |
---|---|---|---|---|---|
T1 | 1293-1304 | Glycan | denotes | chondroitin | https://api.glycosmos.org/wurcs2image/latest/png/binary/G43702JT |
GlyCosmos15-GlycoEpitope
Id | Subject | Object | Predicate | Lexical cue | glycoepitope_id |
---|---|---|---|---|---|
T1 | 1293-1304 | http://purl.jp/bio/12/glyco/glycan#Glycan_epitope | denotes | chondroitin | http://www.glycoepitope.jp/epitopes/EP0081 |
NCBITAXON
Id | Subject | Object | Predicate | Lexical cue | db_id |
---|---|---|---|---|---|
T1 | 282-303 | OrganismTaxon | denotes | multicellular animals | 33208 |
Anatomy-UBERON
Id | Subject | Object | Predicate | Lexical cue | uberon_id |
---|---|---|---|---|---|
T1 | 545-558 | Body_part | denotes | extracellular | http://purl.obolibrary.org/obo/GO_0005576 |
T2 | 559-567 | Body_part | denotes | membrane | http://purl.obolibrary.org/obo/GO_0016020|http://purl.obolibrary.org/obo/UBERON_0000094|http://purl.obolibrary.org/obo/UBERON_0000158 |