A CD99-related antigen on endothelial cells mediates neutrophil but not lymphocyte extravasation in vivo

Author:

Bixel M. Gabriele12,Petri Björn2,Khandoga Alexander G.3,Khandoga Andrej3,Wolburg-Buchholz Karen4,Wolburg Hartwig4,März Sigrid2,Krombach Fritz3,Vestweber Dietmar12

Affiliation:

1. Institute of Cell Biology, Zentrum für Molekularbiologie der Entzündung (ZMBE), Interdisziplinäres Klinisches Forschungszentrum Münster, University of Münster, Münster;

2. Max-Planck-Institute of Molecular Biomedicine, Münster;

3. Institute for Surgical Research, University of Munich, Munich; and

4. Institute of Pathology, University of Tübingen, Germany

Abstract

AbstractCD99 is a long-known leukocyte antigen that does not belong to any of the known protein families. It was recently found on endothelial cells, where it mediates transendothelial migration of human monocytes and lymphocyte recruitment into inflamed skin in the mouse. Here, we show that CD99L2, a recently cloned, widely expressed antigen of unknown function with moderate sequence homology to CD99, is expressed on mouse leukocytes and endothelial cells. Using antibodies, we found that CD99L2 and CD99 are involved in transendothelial migration of neutrophils in vitro and in the recruitment of neutrophils into inflamed peritoneum. Intravital and electron microscopy of cremaster venules revealed that blocking CD99L2 inhibited leukocyte transmigration through the vessel wall (diapedesis) at the level of the perivascular basement membrane. We were surprised to find that, in contrast to CD99, CD99L2 was not relevant for the extravasation of lymphocytes into inflamed tissue. Although each protein promoted cell aggregation of transfected cells, endothelial CD99 and CD99L2 participated in neutrophil extravasation independent of these proteins on neutrophils. Our results establish CD99L2 as a new endothelial surface protein involved in neutrophil extravasation. In addition, this is the first evidence for a role of CD99 and CD99L2 in the process of leukocyte diapedesis in vivo.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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