Amanai K, Sakai M, Sakurai S, Mori T, Nikaido O, Ohtaki T
Dev Growth Differ. 2023; 33(4):421-427.
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Caballero G, Manning J, Gabba A, Beckwith D, FitzGerald F, Kutzner T
Methods Mol Biol. 2022; 2442:307-338.
PMID: 35320533
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Raics M, Timari I, Szilagyi L, Gabius H, Kover K
Methods Mol Biol. 2022; 2442:105-123.
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Wu L, Chen W, Chen Z, Cao J, Dai X, Chen H
J Cell Mol Med. 2021; 26(2):306-311.
PMID: 34904385
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Reggiori F, Gabius H, Aureli M, Romer W, Sonnino S, Eskelinen E
Glycoconj J. 2021; 38(5):625-647.
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From examining the relationship between (corona)viral adhesins and galectins to glyco-perspectives.
Klein M, Romero A, Kaltner H, Percec V, Gabius H
Biophys J. 2020; 120(6):1031-1039.
PMID: 33248129
PMC: 8492467.
DOI: 10.1016/j.bpj.2020.11.020.
Galectin-Glycan Interactions: Guidelines for Monitoring by Se NMR Spectroscopy, and Solvent (H O/D O) Impact on Binding.
Diercks T, Medrano F, FitzGerald F, Beckwith D, Pedersen M, Reihill M
Chemistry. 2020; 27(1):316-325.
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How galectins have become multifunctional proteins.
Caballero G, Kaltner H, Kutzner T, Ludwig A, Manning J, Schmidt S
Histol Histopathol. 2020; 35(6):509-539.
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Galectin-1 Restricts Vascular Smooth Muscle Cell Motility Via Modulating Adhesion Force and Focal Adhesion Dynamics.
Tsai M, Chiang M, Tsai D, Yang C, Hou H, Li Y
Sci Rep. 2018; 8(1):11497.
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Galectin-3 Negatively Regulates Hippocampus-Dependent Memory Formation through Inhibition of Integrin Signaling and Galectin-3 Phosphorylation.
Chen Y, Ma Y, Lin C, Cheng S, Hsu W, Lee E
Front Mol Neurosci. 2017; 10:217.
PMID: 28744198
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Endogenous β-D-galactoside binding lectin during the expansion of the yolk sac in the developing chick embryo.
Mbamalu G, Zalik S
Rouxs Arch Dev Biol. 2017; 196(3):176-184.
PMID: 28305841
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Multivalent Carbohydrate-Lectin Interactions: How Synthetic Chemistry Enables Insights into Nanometric Recognition.
Roy R, Murphy P, Gabius H
Molecules. 2016; 21(5).
PMID: 27187342
PMC: 6274006.
DOI: 10.3390/molecules21050629.
Sweet complementarity: the functional pairing of glycans with lectins.
Gabius H, Manning J, Kopitz J, Andre S, Kaltner H
Cell Mol Life Sci. 2016; 73(10):1989-2016.
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DOI: 10.1007/s00018-016-2163-8.
Unraveling functional significance of natural variations of a human galectin by glycodendrimersomes with programmable glycan surface.
Zhang S, Moussodia R, Vertesy S, Andre S, Klein M, Gabius H
Proc Natl Acad Sci U S A. 2015; 112(18):5585-90.
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A regulatory network of two galectins mediates the earliest steps of avian limb skeletal morphogenesis.
Bhat R, Lerea K, Peng H, Kaltner H, Gabius H, Newman S
BMC Dev Biol. 2011; 11:6.
PMID: 21284876
PMC: 3042966.
DOI: 10.1186/1471-213X-11-6.
Ligand reduces galectin-1 sensitivity to oxidative inactivation by enhancing dimer formation.
Stowell S, Cho M, Feasley C, Arthur C, Song X, Colucci J
J Biol Chem. 2008; 284(8):4989-99.
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Structure determination of a Galectin-3-carbohydrate complex using paramagnetism-based NMR constraints.
Zhuang T, Lee H, Imperiali B, Prestegard J
Protein Sci. 2008; 17(7):1220-31.
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Introduction to galectins.
Leffler H, Carlsson S, Hedlund M, Qian Y, Poirier F
Glycoconj J. 2004; 19(7-9):433-40.
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Mast cells. Receptors, secretagogues, and signaling.
Sharma B, Apgar J, Liu F
Clin Rev Allergy Immunol. 2002; 22(2):119-48.
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Temporal and spatial regulation of expression of two galectins during kidney development of the chicken.
Stierstorfer B, Kaltner H, Neumuller C, Sinowatz F, Gabius H
Histochem J. 2000; 32(6):325-36.
PMID: 10943846
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