A glycosaminoglycan microarray identifies galectin-4 binding to sulfated glycosaminoglycans

Author(s)

K. Sano, M. Nagatomo, K. Shigematsu, K. Yamasaki, D. X. Tuan Anh, A. Shibuya, Y. Otsuka, T. Minamisawa & H.Tateno

Sources

A glycosaminoglycan microarray identifies galectin-4 binding to sulfated glycosaminoglycans Biochemistry and Biophysics Reports, 2026, 47, 102689

Using GAG microarrays, the authors profiled the binding specificity of 49 human lectins, including SIGLECs, C-type lectins, and galectins. GAGs containing 6-O-sulfation, particularly heparin, chondroitin sulfate C, and chondroitin sulfate E, bound broadly to SIGLECs and C-type lectins, whereas weakly sulfated GAGs showed limited interactions. Most galectins did not bind GAGs, but galectin-4 displayed strong affinity for 6-O-sulfated GAGs, especially heparin (Kd = 4.70 × 10⁻⁸ M). Experimental and simulation data indicated cooperative involvement of both carbohydrate-recognition domains. Galectin-4 also bound heparin-positive mast cells, revealing a noncanonical sulfated-GAG recognition mechanism.

Molocular Dynamics -assisted modeling of the Gal-4–HP interaction. (A) Crystal structures of N- and C-terminal CRDs (Gal-4N and Gal-4C) binding lactose. (B) Electrostatic surfaces of CRDs (the left and right panels are for Gal-4N and Gal-4C, respectively) generated by the Adaptive Poisson-Boltzmann Solver (APBS) [31] used via PyMOL ver. 2.5 (Schrodinger, LLC). A HP octasaccharide (IDS[α1-4]SGN[α1-4]IDS[α1-4]SGN[α1-4]IDS[α1-4]SGN[α1-4]IDS[α1-4]SGN[α1]-OH derived from PDB entry 1HPN) was fitted into the groove that includes the lactose binding site, and used as the starting structure of the MD simulation. SGN: NO6-disulfo-glucosamine. IDS: O2-sulfoglucronic acid. R: reducing end. (C) The representative structure of the MD simulation for the HP bound to Gal-4C. (D) Intermolecular hydrogen bonds observed in the representative structure of the Gal-4C-HP complex (black dashed lines; donor-acceptor distance <3.5 Å).

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