Characterization of Sialyloligosaccharide Binding by Recombinant Soluble and Native Cell-associated CD22

CD22, a B cell-specific receptor of the immunoglobulin superfamily, has been demonstrated to bind to oligosaccharides containing α2-6-linked sialic acid (Sia) residues. Previously, we demonstrated that the minimal structure recognized by this lectin is the trisaccharide Siaα2-6Galβ1-4GlcNAc, as foun...

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Veröffentlicht in:The Journal of biological chemistry 1995-03, Vol.270 (13), p.7523-7532
Hauptverfasser: Powell, Leland D., Jain, Rakesh K., Matta, Khushi L., Sabesan, Subramaniam, Varki, Ajit
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Sprache:eng
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Zusammenfassung:CD22, a B cell-specific receptor of the immunoglobulin superfamily, has been demonstrated to bind to oligosaccharides containing α2-6-linked sialic acid (Sia) residues. Previously, we demonstrated that the minimal structure recognized by this lectin is the trisaccharide Siaα2-6Galβ1-4GlcNAc, as found on N-linked, O-linked, or glycolipid structures (Powell, L., and Varki, A.(1994) J. Biol. Chem. 269, 10628-10636). Here we utilize a soluble immunoglobulin fusion construct (CD22Rg) to determine directly by equilibrium dialysis the stoichiometry (2:1) and dissociation constant (32 μM) for Neu5Acα2-6Galβ1-4Glc binding. Inhibition assays performed with over 30 different natural and synthetic sialylated and/or sulfated compounds are utilized to define in greater detail specific structural features involved in oligosaccharide-protein binding. Specifically, the critical features required for binding include the exocyclic hydroxylated side chain of the Sia residue and the α2-6 linkage position to the underlying Gal unit. Surprisingly, alterations of the 2-, 3-, and 4-positions of the latter residue have limited effect on the binding. The nature of the residue to which the Gal is attached may affect binding. Bi(α2-6)-sialylated biantennary oligosaccharides are capable of simultaneously interacting with both lectin sites present on the dimeric CD22Rg fusion construct, giving a marked improvement in binding over monosialylated compounds. Furthermore, data are presented indicating that full-length native CD22, expressed on the surface of Chinese hamster ovary cells, is structurally and functionally a multimeric protein, demonstrating a higher apparent affinity for multiply sialylated compounds over monosialylated compounds. These observations provide a mechanism for strong CD22-dependent cell adhesion despite the relatively low Kd for protein-sugar binding.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.270.13.7523