Enhanced binding of the neural siglecs, myelin-associated glycoprotein andSchwann cell myelin protein, to Chol-1 (alpha-series) gangliosides and novel sulfated Chol-1 analogs

Citation
Be. Collins et al., Enhanced binding of the neural siglecs, myelin-associated glycoprotein andSchwann cell myelin protein, to Chol-1 (alpha-series) gangliosides and novel sulfated Chol-1 analogs, J BIOL CHEM, 274(53), 1999, pp. 37637-37643
Citations number
46
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
274
Issue
53
Year of publication
1999
Pages
37637 - 37643
Database
ISI
SICI code
0021-9258(199912)274:53<37637:EBOTNS>2.0.ZU;2-P
Abstract
Extended glycoconjugate binding specificities of three sialic acid-dependen t immunoglobulin-like family member lectins (siglecs), myelin-associated gl ycoprotein (MAG), Schwann cell myelin protein (SMP), and sialoadhesin, were compared by measuring siglec-mediated cell adhesion to immobilized ganglio sides, Synthetic gangliosides bearing the oc series determinant (NeuAc alph a 2,6-linked to GalNAc on a gangliotetraose core) were tested, including GD 1 alpha (IV(3)NeuAc, III(6)NeuAc-Gg(4)OseCer), GD1 alpha with modified sial ic acid residues at the III6-position, and the "Chol-1" gangliosides GT1a a lpha (IV(3)NeuAc, III(6)NeuAc, II(3)NeuAc-Gg(4)OseCer) and GQ1b alpha (IV(3 )NeuAc, III(6)NeuAc, II3(NeuAc)(2)-Gg(4)OseCer). The a-series gangliosides displayed enhanced potency for MAG- and SMP-mediated cell adhesion (GQ1b al pha > GT1a alpha, GD1 alpha > GT1b, GD1a >> GM1 (nonbinding)), whereas sial oadhesin-mediated adhesion was comparable with cu-series and non-a-series g angliosides, GD1 alpha derivatives with modified sialic acids (7-, 8-, or g -deoxy) or sulfate (instead of sialic acid) at the III6-position supported adhesion comparable with that of GD1 alpha. Notably, a novel GT1a alpha ana log with sulfates at two internal sites of sialylation (NeuAc alpha 2,3Gal beta 1,4GalNAc-6-sulfate beta 1, 4Gal3-sulfate beta 1,4Glc beta 1,1'ceramid e) was the most potent siglec-binding structure tested to date (10-fold mor e potent than GT1a alpha in supporting MAG and SMP binding). Together with prior studies, these data indicate that MAG and SMP display an extended str uctural specificity with a requirement for a terminal alpha 2,3-linked NeuA c and great enhancement by nearby precisely spaced anionic charges.