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Galectin

About: Galectin is a research topic. Over the lifetime, 2076 publications have been published within this topic receiving 103409 citations. The topic is also known as: IPR001079 & Galectin.


Papers
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Journal ArticleDOI
TL;DR: The findings show the positive impact of 6-biotinylation of tetrasaccharides on galectin-3 binding, which broadens the recent design approaches for producing high-affinity ligands.
Abstract: Galectin inhibitor design is an emerging research field due to the involvement of galectins in cancer. Galectin-3, in particular, plays an important role in tumor progression. To generate inhibitors, modifications of the glycan structure can be introduced. Conjugation of hydrophobic compounds to saccharides has proven to be promising as increased binding of galectin-3 can be observed. In the present study, we report on neo-glycans carrying hydrophobic biotin as novel ligands for human galectin-3. We modified N-acetyllactosamine- and N,N-diacetyllactosamine-based tetrasaccharides at the C6-position of the terminal saccharide unit using selective enzymatic oxidation and subsequent chemical conjugation of biotinamidohexanoic acid hydrazide. These neo-glycans were much better bound by galectin-3 than the unmodified counterparts. High selectivity for galectin-3 over galectin-1 was also proven. We generated multivalent neo-glycoproteins by conjugation of neo-glycans to bovine serum albumin showing high affinity for galectin-3. Compared to non-biotinylated neo-glycoproteins, we achieved high binding levels of galectin-3 with a lesser amount of conjugated neo-glycans. Multivalent ligand presentation of neo-glycoproteins significantly increased the inhibitory potency towards galectin-3 binding to asialofetuin when compared to free monovalent glycans. Our findings show the positive impact of 6-biotinylation of tetrasaccharides on galectin-3 binding, which broadens the recent design approaches for producing high-affinity ligands.

16 citations

Journal ArticleDOI
TL;DR: The results reflect the complexity and singularity of host–pathogen interactions, indicating a species‐specific role of endogenous galectin‐3 in the control of parasite infections and the modulation of antibody responses.
Abstract: Galectins are evolutionarily conserved glycan-binding proteins with pleiotropic roles in innate and adaptive immune responses. Galectin-3 has been implicated in several immunological processes as well as in pathogen recognition through specific binding to glycosylated receptors on the surface of host cells or microorganisms. In spite of considerable evidence supporting a role for galectin-3 in host-pathogen interactions, the relevance of this lectin in the regulation of the host defence mechanisms in vivo is poorly understood. In this study, we analysed the impact of galectin-3 deficiency during infection with three distinct species of rodent malaria parasites, Plasmodium yoelii 17XNL, Plasmodium berghei ANKA and Plasmodium chabaudi AS. We found that galectin-3 deficiency showed a marginal effect on the course of parasitaemia during P. chabaudi infection, but did not alter the course of parasitaemia during P. berghei infection. However, lack of galectin-3 significantly reduced P. yoelii parasitaemia. This reduced parasitaemia in Lgals3(-/-) mice was consistent with higher titres of anti-P. yoelii MSP1(19) IgG2b isotype antibodies when compared with their wild-type counterparts. Our results reflect the complexity and singularity of host-pathogen interactions, indicating a species-specific role of endogenous galectin-3 in the control of parasite infections and the modulation of antibody responses.

16 citations

Journal ArticleDOI
TL;DR: Combined approaches of representational difference analysis and microarray identified genes differentially transcribed in anergic B cells isolated from a well-characterized murine autoantibody transgenic model, suggesting a novel role for galectins as regulators of immune tolerance.

16 citations

Patent
28 Apr 2004
TL;DR: In this article, it has been found that a factor inducing the production and release of galectin 9, "galectin9-inducing factor" is contained in a certain solubilized tumor cell membrane fraction, which can be obtained as a concanavalin A-adsorbed fraction and as a concentrated active fraction by fractionation with an ion exchange column packed with Resource Q®, a hydroxyapatite column, etc.
Abstract: It has been disclosed that Galectin 9, which is a physiologically active substance acting as a lectin, is expressed in various cells and a correlationship is observed between the expression level of galectin 9 and the metastatic ability of tumors. Therefore, it is presumed that galectin 9 would relate to various physiological phenomena. Thus, a substance allowing the control of galectin 9 production and release is expected as exerting an activity of inducing antitumor and/or anti-inflammatory actions, etc. Therefore, it is required to reveal the same. It has been found that a factor inducing the production and release of galectin 9, “galectin 9-inducing factor”, is contained in a certain solubilized tumor cell membrane fraction. This factor can be obtained as a concanavalin A-adsorbed fraction and as a concentrated active fraction by fractionation with an ion exchange column packed with Resource Q®, a hydroxyapatite column, etc. Assay reagents, drugs, assays, etc. can be developed by using the galectin 9-inducing activity of this factor.

16 citations

Journal ArticleDOI
TL;DR: It is shown for the first time that a small soluble lectin, human galectin-1, one member of a large galECTin family, can function as a fusion partner to produce soluble folded recombinant human glycosyltransferase, beta-1-4-galactosyltransfer enzyme-7 (beta4Gal-T7), in E. coli.

16 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
2023182
2022176
2021107
2020120
201995
2018119