Chemically distinct transition states govern rapid dissociation of single L-selectin bonds under force
Open Access
- 13 March 2001
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (7) , 3784-3789
- https://doi.org/10.1073/pnas.061324998
Abstract
Carbohydrate–protein bonds interrupt the rapid flow of leukocytes in the circulation by initiation of rolling and tethering at vessel walls. The cell surface carbohydrate ligands are glycosylated proteins like the mucin P-selectin glycoprotein ligand-1 (PSGL-1), which bind ubiquitously to the family of E-, P-, and L-selectin proteins in membranes of leukocytes and endothelium. The current view is that carbohydrate–selectin bonds dissociate a few times per second, and the unbinding rate increases weakly with force. However, such studies have provided little insight into how numerous hydrogen bonds, a Ca2+ metal ion bond, and other interactions contribute to the mechanical strength of these attachments. Decorating a force probe with very dilute ligands and controlling touch to achieve rare single-bond events, we have varied the unbinding rates of carbohydrate–selectin bonds by detachment with ramps of force/time from 10 to 100,000 pN/sec. Testing PSGL-1, its outer 19 aa (19FT), and sialyl LewisX (sLeX) against L-selectin in vitro on glass microspheres and in situ on neutrophils, we found that the unbinding rates followed the same dependence on force and increased by nearly 1,000-fold as rupture forces rose from a few to ≈200 pN. Plotted on a logarithmic scale of loading rate, the rupture forces reveal two prominent energy barriers along the unbinding pathway. Strengths above 75 pN arise from rapid detachment (0.01 sec) impeded by the outer barrier, which appears to involve an array of weak (putatively hydrogen) bonds.Keywords
This publication has 33 references indexed in Scilit:
- Brownian motion in a field of force and the diffusion model of chemical reactionsPublished by Elsevier ,2004
- Introductory Lecture Energy landscapes of biomolecular adhesion and receptor anchoring at interfaces explored with dynamic force spectroscopyFaraday Discussions, 1999
- The Kinetics of L-selectin Tethers and the Mechanics of Selectin-mediated RollingThe Journal of cell biology, 1997
- Lifetime of the P-selectin-carbohydrate bond and its response to tensile force in hydrodynamic flowNature, 1995
- Traffic signals for lymphocyte recirculation and leukocyte emigration: The multistep paradigmCell, 1994
- Expression cloning of a functional glycoprotein ligand for P-selectinCell, 1993
- The three members of the selectin receptor family recognize a common carbohydrate epitope, the sialyl Lewis(x) oligosaccharideThe Journal of cell biology, 1992
- Leukocytes roll on a selectin at physiologic flow rates: Distinction from and prerequisite for adhesion through integrinsCell, 1991
- Adhesion receptors of the immune systemNature, 1990
- Models for the Specific Adhesion of Cells to CellsScience, 1978