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Carbohydrate microarrays reveal sulphation as a modulator of siglec binding
Authors:Campanero-Rhodes María Asunción  Childs Robert A  Kiso Makato  Komba Shiro  Le Narvor Christine  Warren Joanna  Otto Diana  Crocker Paul R  Feizi Ten
Institution:The Glycosciences Laboratory, Imperial College Faculty of Medicine, Northwick Park and St Mark's Campus, Harrow HA1 3UJ, UK.
Abstract:Siglecs are receptors on cells of the immune, haemopoietic, and nervous systems that recognize sialyl-glycans with differing preferences for sialic acid linkage and oligosaccharide backbone sequence. We investigate here siglec binding using microarrays of Lewis(x) (Le(x))- and 3'-sialyl-Le(x)-related probes with different sulphation patterns. These include sulphation at position 3 of the terminal galactose of Le(x), position 6 of the galactose of Le(x) and sialyl-Le(x), position 6 of N-acetylglucosamine of Le(x) and sialyl-Le(x), or both positions of sialyl-Le(x). Recombinant soluble forms of five siglecs have been investigated: human Siglec-7, -8, -9, and murine Siglec-F and CD22 (Siglec-2). Each siglec has a different binding pattern. Unlike two C-type lectins of leukocytes, L-selectin and Langerin, which also bind to sulphated analogues of sialyl-Le(x), the siglecs do not give detectable binding signals with sulphated analogues that are lacking sialic acid. The sulphate groups modulate, however, positively or negatively the siglec binding intensities to the sialyl-Le(x) sequence.
Keywords:Carbohydrate-binding proteins  Glycolipids  Carbohydrate-protein interactions  Immune system  Lectin-type receptors  Lewis X  Microarrays of oligosaccharide probes  Neoglycolipids  Selectins  Siglecs  Sialylated oligosaccharide sequences  Sulphated oligosaccharide sequences
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