Mistletoe lectin I in complex with galactose and lactose reveals distinct sugar-binding properties

Mikeska, Ruth ; Wacker, Roland ; Arni, Raghuvir ; Singh, Tej P. ; Mikhailov, Albert ; Gabdoulkhakov, Azat ; Voelter, Wolfgang ; Betzel, Christian (2005) Mistletoe lectin I in complex with galactose and lactose reveals distinct sugar-binding properties Acta Crystallographica Section F, 61 (1). pp. 17-25. ISSN 1744-3091

Full text not available from this repository.

Official URL: http://onlinelibrary.wiley.com/doi/10.1107/S174430...

Related URL: http://dx.doi.org/10.1107/S1744309104031501

Abstract

The structures of mistletoe lectin I (ML-I) from Viscum album complexed with lactose and galactose have been determined at 2.3 Å resolution and refined to R factors of 20.9% (Rfree = 23.6%) and 20.9 (Rfree = 24.6%), respectively. ML-I is a heterodimer and belongs to the class of ribosome-inactivating proteins of type II, which consist of two chains. The A-chain has rRNA N-glycosidase activity and irreversibly inhibits eukaryotic ribosomes. The B-chain is a lectin and preferentially binds to galactose-terminated glycolipidsand glycoproteins on cell membranes. Saccharide binding is performed by two binding sites in subdomains α 1 and γ2 of the ML-I B-chain separated by ˜62 Å from each other. The favoured binding of galactose in subdomain α 1 is achieved via hydrogen bonds connecting the 4-hydroxyl and 3-hydroxyl groups of the sugar moiety with the side chains of Asp23B, Gln36B and Lys41B and the main chain of 26B. The aromatic ring of Trp38B on top of the preferred binding pocket supports van der Waals packing of the apolar face of galactose and stabilizes the sugar-lectin complex. In the galactose-binding site II of subdomain γ 2, Tyr249B provides the hydrophobic stacking and the side chains of Asp235B, Gln238B and Asn256B are hydrogen-bonding partners for galactose. In the case of the galactose-binding site I, the 2-hydroxyl group also stabilizes the sugar-protein complex, an interaction thus far rarely detected in galactose-specific lectins. Finally, a potential third low-affinity galactose-binding site in subunit β1 was identified in the present ML-I structures, in which a glycerol molecule from the cryoprotectant buffer has bound, mimicking the sugar compound.

Item Type:Article
Source:Copyright of this article belongs to John Wiley and Sons.
Keywords:Ribosome-Inactivation Proteins; Mistletoe Lectin I; Sugar-Binding Sites;
ID Code:49118
Deposited On:18 Jul 2011 14:20
Last Modified:18 Jul 2011 14:20

Repository Staff Only: item control page