Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: UMLS:C0267964 (
PAA
)
2,561
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The carbohydrate specificity of 57 MAbs submitted to the ISOBM TD-4 Workshop on MUC1 were investigated by two versions of ELISA, direct binding and inhibition of binding. The following free saccharides and their polyacrylamide conjugates (Sug-
PAA
) were used: tetrasaccharides--SiaLe(x), Sia--Le(a); trisaccharides--Le(x), 3'HSO3Le(x), Le(a), 3'HSO3Le(a), 3'SiaLac, Atri, Btri; a number of disaccharides including TF, Hdi, SiaTn, LactNAc, and monosaccharides. It was shown that MAbs 143 and 167 interacted only with SiaLe(x), MAbs 127 and 128 only with Le(x). Antibodies 123 and 164 interacted preferably with Le(a) but also recognized Le(c). Antibody 151 recognized alpha
GalNAc
(Tn) and cross-reacted with beta
GalNAc
. Antibody 157 displayed high affinity to Atri and Atetr (type 1). Neither anti-TF nor anti-SiaTn antibodies were revealed.
...
PMID:Determination of carbohydrate specificity of monoclonal antibodies against MUC1. 942 92
Previously we isolated GlcNAc-specific lectin (DTL) from the ascidian Didemnum ternatanum by affinity chromatography on cross-linked ovalbumin. Here we report the purification and characterization of new D-GlcNAc/D-
GalNAc
-specific lectin DTL-A from the same ascidian. This lectin was isolated from non-bound cross-linked ovalbumin fraction and further was purified by gel filtration on Sepharose CL-4B, affinity chromatography on GlcNAc-agarose and gel filtration on Superdex 200. SDS-polyacrylamide gel electrophoresis and gel filtration of purified lectin on Sepharose CL-4B indicates that it exists as large aggregates in the native state. Investigations of the carbohydrate specificity of DTL-A by enzyme-linked lectin assay suggest the multi-specificity of this lectin. DTL-A binds BSM, asialo-BSM as well as heparin and dextran sulfate. The binding of DTL-A to BSM was inhibited by monosaccharides D-GlcNAc and D-
GalNAc
, their alpha- but not beta-anomers. Among polysaccharides and glycoconjugates, DTL-A binding to BSM was effectively inhibited by BSM, asialo-BSM, pronase-treated BSM and synthetic alpha-D-
GalNAc
-
PAA
. Fetuin and asialofetuin showed a much lower inhibitory potency, heparin and dextran sulfate were noninhibitory. On the other hand, DTL-A binding to heparin was effectively inhibited by dextran sulfate, fucoidan, whereas BSM showed insignificantly inhibitory effect. DTL-A binding to heparin was not inhibited by D-GlcNAc and D-
GalNAc
.
...
PMID:New GlcNAc/GalNAc-specific lectin from the ascidian Didemnum ternatanum. 1578 80
Sperm binding to oviductal epithelium would be involved in sperm reservoir formation in the utero tubal junction (UTJ). Although in other mammals sperm-oviduct interaction has been proved to be mediated by carbohydrate-recognition mechanisms, the factors implicated in the sperm adhesion to oviductal epithelium of llama are still unknown. In order to assess the role of carbohydrates present in the mucosa surface, we examined the distribution of glycoconjugates in the llama oviduct by confocal lectin-histochemistry. Mannosyl, glucosyl, N-acetylglucosaminyl, galactosyl, N-acetylgalactosaminyl and sialic acid residues were detected in the oviductal mucose glycocalyx. By incubation of UTJ oviductal explants with LCA, DBA, UEA-1 or PNA lectin previous to co-culture with sperm, we observed a significant decrease in sperm binding only with LCA lectin. In the mucosa surface there were numerous d-glucosyl and D-manosyl residues, which were spotted by this lectin. Probably, this fact promotes the whole covering of the oviduct luminal surface by the sugar-lectin complex, preventing sperm access and adhesion of further residues. However, sperm incubation with mannose or glucose does not significantly prevent binding, which means that glucose and mannose would not be involved in a specific sperm-oviduct interaction. On the other hand, we observed a high reduction in sperm binding to UTJ explants with
N-acetylgalactosamine
and galactose (p<0.001). Coincidentally, binding sites for
N-acetylgalactosamine
-
PAA
-FITC conjugate were observed on the whole surface of the sperm, supporting the concept that llama sperm have lectin-like molecules in their surface, as is the case in other mammals. Probably, these lectin-like molecules, by means of
N-acetylgalactosamine
and galactose recognition, could link the sperm to the oviductal mucosa with the purpose of forming storing sites in the UTJ. Our results support the idea that more than one carbohydrate could participate in sperm reservoir formation in the llama UTJ oviductal segment.
...
PMID:Lectin binding patterns and carbohydrate mediation of sperm binding to llama oviductal cells in vitro. 1968 6