Single-molecule pair studies of the interactions of the a-GalNAc (Tn-antigen) form of porcine submaxillary mucin with soybean agglutinin

Mucins form a group of heavily O-glycosylated biologically important glycoproteins that are involved in a variety of biological functions, including modulating immune response, inflammation, and adhesion. Mucins are also involved in cancer and metastasis and often express diagnostic cancer antigens....

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Veröffentlicht in:Biopolymers 2009-09, Vol.91 (9), p.719-728
Hauptverfasser: Sletmoen, Marit, Dam, Tarun K, Gerken, Thomas A, Stokke, Bjorn T, Brewer, Curtis Fred
Format: Artikel
Sprache:eng
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Zusammenfassung:Mucins form a group of heavily O-glycosylated biologically important glycoproteins that are involved in a variety of biological functions, including modulating immune response, inflammation, and adhesion. Mucins are also involved in cancer and metastasis and often express diagnostic cancer antigens. Recently, a modified porcine submaxillary mucin (Tn-PSM) containing GalNAc1-O-Ser/Thr residues was shown to bind to soybean agglutinin (SBA) with 106-fold enhanced affinity relative to GalNAc1-O-Ser, the pancarcinoma carbohydrate antigen. In this study, dynamic force spectroscopy is used to investigate molecular pairs of SBA and Tn-PSM. A number of force jumps that demonstrate unbinding or rebinding events were observed up to a distance equal to 2.0 m, consistent with the length of the mucin chain. The unbinding force increased from 103 to 402 pN with increasing force loading rate. The position of the activation barrier in the energy landscape of the interaction was 0.1 nm. The lifetime of the SBA-TnPSM complex in the absence of applied force was determined to be in the range 1.3-1.9 s. Kinetic parameters describing the rate of dissociation of other sugar lectin interactions are in the range 3.3 X 10-3-2.5 X 10-3 s. The long lifetime of the SBA-TnPSM complex is compatible with a binding model in which lectin molecules bind and jump from -GalNAc residue to -GalNAc residue along the polypeptide chain of Tn-PSM before dissociating. These findings have important implications for the molecular recognition properties of mucins.
ISSN:0006-3525
1097-0282
DOI:10.1002/bip.21213