Biomechanics of P-selectin PSGL-1 Bonds: Shear Threshold and Integrin-independent Cell Adhesion
Overview
Affiliations
Platelet-leukocyte adhesion may contribute to thrombosis and inflammation. We examined the heterotypic interaction between unactivated neutrophils and either thrombin receptor activating peptide (TRAP)-stimulated platelets or P-selectin-bearing beads (Ps-beads) in suspension. Cone-plate viscometers were used to apply controlled shear rates from 14 to 3000/s. Platelet-neutrophil and bead-neutrophil adhesion analysis was performed using both flow cytometry and high-speed videomicroscopy. We observed that although blocking antibodies against either P-selectin or P-selectin glycoprotein ligand-1 (PSGL-1) alone inhibited platelet-neutrophil adhesion by approximately 60% at 140/s, these reagents completely blocked adhesion at 3000/s. Anti-Mac-1 alone did not alter platelet-neutrophil adhesion rates at any shear rate, though in synergy with selectin antagonists it abrogated cell binding. Unstimulated neutrophils avidly bound Ps-beads and activated platelets in an integrin-independent manner, suggesting that purely selectin-dependent cell adhesion is possible. In support of this, antagonists against P-selectin or PSGL-1 caused dissociation of previously formed platelet-neutrophil and Ps-bead neutrophil aggregates under shear in a variety of experimental systems, including in assays performed with whole blood. In studies where medium viscosity and shear rate were varied, a shear threshold for P-selectin PSGL-1 binding was also noted at shear rates <100/s when Ps-beads collided with isolated neutrophils. Results are discussed in light of biophysical computations that characterize the collision between unequal-size particles in linear shear flow. Overall, our studies reveal an integrin-independent regime for cell adhesion and weak shear threshold for P-selectin PSGL-1 interactions that may be physiologically relevant.
Tuning immunity through tissue mechanotransduction.
Du H, Bartleson J, Butenko S, Alonso V, Liu W, Winer D Nat Rev Immunol. 2022; 23(3):174-188.
PMID: 35974148 PMC: 9379893. DOI: 10.1038/s41577-022-00761-w.
Efficient inhibition of O-glycan biosynthesis using the hexosamine analog AcGalNTGc.
Wang S, Del Solar V, Yu X, Antonopoulos A, Friedman A, Agarwal K Cell Chem Biol. 2021; 28(5):699-710.e5.
PMID: 33609441 PMC: 8140985. DOI: 10.1016/j.chembiol.2021.01.017.
Selectins: An Important Family of Glycan-Binding Cell Adhesion Molecules in Ovarian Cancer.
Hassan A, Artemenko M, Tang M, Wong A Cancers (Basel). 2020; 12(8).
PMID: 32785160 PMC: 7463917. DOI: 10.3390/cancers12082238.
The Extraordinary Role of Extracellular RNA in Arteriogenesis, the Growth of Collateral Arteries.
Kluever A, Braumandl A, Fischer S, Preissner K, Deindl E Int J Mol Sci. 2019; 20(24).
PMID: 31817879 PMC: 6940760. DOI: 10.3390/ijms20246177.
Stolfa G, Mondal N, Zhu Y, Yu X, Buffone Jr A, Neelamegham S Sci Rep. 2016; 6:30392.
PMID: 27458028 PMC: 4960646. DOI: 10.1038/srep30392.