TY - JOUR T1 - Single-Molecule Imaging and Microfluidic Platform Reveal Molecular Mechanisms of Leukemic Cell Rolling JF - bioRxiv DO - 10.1101/2020.04.29.069617 SP - 2020.04.29.069617 AU - Bader Al Alwan AU - Karmen AbuZineh AU - Shuho Nozue AU - Aigerim Rakhmatulina AU - Mansour Aldehaiman AU - Asma S. Al-Amoodi AU - Maged F. Serag AU - Fajr A. Aleisa AU - Jasmeen S. Merzaban AU - Satoshi Habuchi Y1 - 2020/01/01 UR - http://biorxiv.org/content/early/2020/12/16/2020.04.29.069617.abstract N2 - Hematopoietic stem/progenitor cell (HSPC) and leukemic cell homing is an important biological phenomenon that occurs through key interactions between adhesion molecules. Tethering and rolling of the cells on endothelium, the crucial initial step of the adhesion cascade, is mediated by interactions between selectins expressed on endothelium to their ligands expressed on HSPCs/leukemic cells in flow. Although multiple factors that affect the rolling behavior of the cells have been identified, molecular mechanisms that enable the essential slow and stable cell rolling remain elusive. To investigate the molecular mechanisms of cell rolling, an experimental platform that enables molecular level characterization of the adhesion molecules in the context of space, time, and force is required. Here, using a microfluidics-based single-molecule live cell fluorescence imaging, we reveal that unique spatiotemporal dynamics of selectin ligands on the membrane tethers and slings, which are distinct from that on the cell body, play an essential role in the rolling of the cell. Our results suggest that the spatial confinement of the selectin ligands to the tethers and slings together with the rapid scanning of a large area by the selectin ligands, increases the efficiency of selectin-ligand interactions during cell rolling, resulting in slow and stable rolling of the cell on the selectins. Our findings provide novel insights and contribute significantly to the molecular-level understanding of the initial and essential step of the homing process.Competing Interest StatementThe authors have declared no competing interest. ER -