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Analysis of Physiologic E-Selectin-Mediated Leukocyte Rolling on Microvascular Endothelium
Published on: February 11, 2009
Sialylated O-glycans and L-selectin sequentially mediate myeloid cell rolling in vivo
K Ley1, A Zakrzewicz, C Hanski
1Department of Biomedical Engineering, University of Virginia School of Medicine, Charlottesville 22908, USA.
Abstract:
Leukocyte rolling precedes firm adhesion and emigration in inflammatory cell recruitment. Both P-selectin, an endothelial lectin that binds to sialylated O-glycans containing sialyl-Lewisx (sLex) on the granulocyte surface, and leukocyte L-selectin have been shown to mediate leukocyte rolling in vivo. Here, we investigate rolling of isolated human neutrophils (PMN), HL-60 promyelocytes, and an L-selectin-transfected cell line (300.19-L) during trauma-induced inflammation in rat mesenteric venules. HL-60 cells, which express no L-selectin but abundant sLex, rolled effectively immediately after abdominal surgery. HL-60 cell rolling was almost completely abolished by pretreatment with sialidase or monoclonal antibody (MoAb) AM-3 recognizing sLex, and was reduced by about 80% by O-sialoglycoprotein-endopeptidase (OSGP). By contrast, 300.19-L cells rolled poorly immediately after surgery but rolled well between 40 and 120 minutes after surgery. Their rolling was completely inhibited by the blocking L-selectin MoAb LAM1-3, but not by a binding control MoAb. PMN express both L-selectin and clustered, sialylated glycoproteins including P-selectin glycoprotein ligand-1 (PSGL-1). PMN showed effective rolling at all times, which was abolished by sialidase or MoAb AM-3 pretreatment during the first 30 minutes after surgery, but not later, when PMN rolling was largely L-selectin-dependent. We conclude that in trauma-induced inflammation, a two-step mechanism accounts for most of myeloid cell rolling, which initially requires O-glycans and subsequently depends on L-selectin function.
Insights
Leukocyte rolling in trauma involves a two-step process. Initially, sialylated O-glycans mediate rolling, followed by L-selectin-dependent mechanisms for sustained leukocyte recruitment.
Area of Science:
- Immunology
- Cell Biology
- Inflammation Research
Background:
- Leukocyte rolling is a critical early step in inflammatory cell recruitment.
- P-selectin and L-selectin are known mediators of leukocyte rolling.
- Sialylated O-glycans, including sialyl-Lewisx (sLex), are important ligands on leukocytes.
Purpose of the Study:
- To investigate the distinct roles of O-glycans and L-selectin in leukocyte rolling during trauma-induced inflammation.
- To analyze the temporal dynamics of myeloid cell rolling mechanisms in vivo.
Main Methods:
- Utilized isolated human neutrophils (PMN), HL-60 promyelocytes, and L-selectin-transfected cells (300.19-L) in a rat mesenteric venule model.
- Administered sialidase, anti-sLex monoclonal antibody (MoAb) AM-3, O-sialoglycoprotein-endopeptidase (OSGP), and anti-L-selectin MoAb LAM1-3 to assess rolling inhibition.
- Observed rolling behavior at different time points following abdominal surgery.
Main Results:
- HL-60 cells (expressing sLex, no L-selectin) showed immediate rolling, inhibited by sialidase, anti-sLex MoAb, and OSGP.
- 300.19-L cells (L-selectin expressing) exhibited delayed rolling, dependent on L-selectin function.
- PMN rolling was initially sLex-dependent, transitioning to L-selectin-dependent rolling over time.
Conclusions:
- Trauma-induced leukocyte rolling employs a sequential mechanism.
- Early rolling relies on O-glycans, while later rolling is primarily mediated by L-selectin.
- This two-step process is crucial for effective myeloid cell recruitment in inflammation.
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