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Updated: Aug 8, 2026

Analysis of Physiologic E-Selectin-Mediated Leukocyte Rolling on Microvascular Endothelium
Published on: February 11, 2009
L-selectin shedding is independent of its subsurface structures and topographic distribution
B P Fors1, K Goodarzi, U H von Andrian
1Center for Blood Research and Department of Pathology, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Insights
L-selectin shedding upon protein kinase C (PKC) activation is determined by its ectodomain, independent of cell surface topography. Calmodulin inhibition involves both ectodomain and transmembrane/intracellular domains.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- L-selectin (CD62L) is crucial for lymphocyte homing and inflammation.
- Its function depends on clustering mediated by transmembrane (TM) and intracellular (IC) domains on microvilli.
- L-selectin ectodomain shedding occurs after protein kinase C (PKC) activation or calmodulin inhibition.
Purpose of the Study:
- To investigate the role of L-selectin topography and its TM/IC domains in ectodomain shedding.
- To differentiate the mechanisms of shedding induced by PKC activation versus calmodulin inhibition.
Main Methods:
- Used stable transfectants expressing wild-type (WT) L-selectin or chimeric molecules with L-selectin ectodomain fused to CD44 or CD31 TM/IC domains.
- Stimulated cells with phorbol 12-myristate 13-acetate (PMA) for PKC activation and trifluoperazine for calmodulin inhibition.
- Analyzed ectodomain shedding using a metalloprotease inhibitor.
Main Results:
- PKC activation by PMA induced dose-dependent ectodomain shedding in all cell lines, irrespective of L-selectin or chimera localization.
- Calmodulin inhibition by trifluoperazine induced shedding in both WT and chimera transfectants.
- Shedding was blocked by a metalloprotease inhibitor, indicating proteolytic cleavage.
- High trifluoperazine concentrations showed more pronounced shedding of WT L-selectin compared to chimeras.
Conclusions:
- PKC-induced L-selectin shedding relies solely on the ectodomain, with surface topography and TM/IC domains being irrelevant.
- Calmodulin inhibition-induced shedding has dual components: one dependent on L-selectin TM/IC domains and another independent of them.
Abstract:
L-selectin (CD62L), a lectin-like adhesion molecule, mediates lymphocyte homing and leukocyte accumulation at sites of inflammation. Its transmembrane (TM) and intracellular (IC) domains confer clustering of L-selectin on microvilli of resting leukocytes, which is important for L-selectin function. Following activation of protein kinase C (PKC) or calmodulin inhibition, the wild-type (WT) protein is rapidly cleaved in its membrane-proximal ectodomain. To examine whether L-selectin topography or TM/IC domains are involved in this shedding process, we used stable transfectants expressing WT L-selectin (on microvilli) or chimeric molecules consisting of the L-selectin ectodomain linked to the TM/IC domains of CD44 (excluded from microvilli) or CD31 (randomly distributed). PKC activation by PMA altered the cells' surface morphology, but did not induce a redistribution of L-selectin ectodomains. All cell lines shed ectodomains upon PMA activation in a dose-dependent fashion and with similar kinetics. Calmodulin inhibition by trifluoperazine induced shedding in both WT and chimera transfectants. At high trifluoperazine concentrations, shedding of WT L-selectin was significantly more pronounced than that of chimeric molecules. Regardless of the activating stimulus, shedding was blocked by a hydroxamate-based metalloprotease inhibitor, suggesting that ectodomain down-regulation occurred through proteolytic cleavage by identical protease(s). These results show that the recognition site(s) for PKC-induced L-selectin shedding is exclusively contained within the ectodomain; the nature of subsurface structures and surface topography are irrelevant. Shedding induced by calmodulin inhibition has two components: one requires the L-selectin TM/IC domain, and the other is independent of it.
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