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Updated: Aug 8, 2026

Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
Cytoskeletal interactions regulate inducible L-selectin clustering
Polly E Mattila1, Chad E Green, Ulrich Schaff
1Department of Veterinary and Biomedical Sciences, University of Minnesota, St. Paul, MN 55108, USA.
Insights
L-selectin (CD62L) mobility, crucial for neutrophil function in inflammation, is regulated by the actin cytoskeleton. This interaction enhances L-selectin
Area of Science:
- Immunology
- Cell Biology
- Biophysics
Background:
- L-selectin (CD62L) is vital for neutrophil recruitment to inflammatory sites.
- L-selectin clustering increases adhesiveness and signaling, but its mobility regulation is unclear.
- Neutrophil stimulation alters plasma membrane organization into specific domains.
Purpose of the Study:
- To investigate the molecular mechanisms regulating L-selectin lateral mobility.
- To understand the role of the actin cytoskeleton and membrane domains in L-selectin function.
Main Methods:
- Studied L-selectin clustering and colocalization with membrane proteins (CD55, CD45, CD11c).
- Investigated the effect of microfilament disruption and cytoplasmic motif removal on L-selectin mobility.
- Assessed L-selectin-dependent tethering under shear flow.
Main Results:
- L-selectin clustered with GPI-anchored CD55, excluding CD45 and CD11c.
- Disrupting microfilaments or altering the cationic motif increased L-selectin mobility and domain localization.
- The cationic motif was essential for L-selectin-mediated tethering.
Conclusions:
- L-selectin lateral mobility is regulated by interactions with the actin cytoskeleton.
- Actin cytoskeleton interactions enhance L-selectin-mediated leukocyte tethering.
- Dynamic associations with membrane domains and cytoskeleton regulate L-selectin's effector functions.
Abstract:
L-selectin (CD62L) amplifies neutrophil capture within the microvasculature at sites of inflammation. Activation by G protein-coupled stimuli or through ligation of L-selectin promotes clustering of L-selectin and serves to increase its adhesiveness, signaling, and colocalization with beta(2)-integrins. Currently, little is known about the molecular process regulating the lateral mobility of L-selectin. On neutrophil stimulation, a progressive change takes place in the organization of its plasma membrane, resulting in membrane domains that are characteristically enriched in glycosyl phosphatidylinositol (GPI)-anchored proteins and exclude the transmembrane protein CD45. Clustering of L-selectin, facilitated by E-selectin engagement or antibody cross-linking, resulted in its colocalization with GPI-anchored CD55, but not with CD45 or CD11c. Disrupting microfilaments in neutrophils or removing a conserved cationic motif in the cytoplasmic domain of L-selectin increased its mobility and membrane domain localization in the plasma membrane. In addition, the conserved element was critical for L-selectin-dependent tethering under shear flow. Our data indicate that L-selectin's lateral mobility is regulated by interactions with the actin cytoskeleton that in turn fortifies leukocyte tethering. We hypothesize that both membrane mobility and stabilization augment L-selectin's effector functions and are regulated by dynamic associations with membrane domains and the actin cytoskeleton.
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