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PMID: 12050190 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

In vitro assessment of chemokine receptor-ligand interactions mediating mouse eosinophil migration.

Journal of leukocyte biology ·Vol. 71 ·No. 6 ·2002-06-00 ·Pages 1033-41

Borchers MT, Ansay T, DeSalle R, Daugherty BL, Shen H, Metzger M, Lee NA, Lee JJ

Abstract

Eosinophil migration from circulation is controlled, in part, by chemokines through a family of G-protein-coupled chemokine receptors (CCR). Studies of human eosinophils have demonstrated that signaling through CCR3 receptors is a prominent pathway leading to chemotaxis, although several other receptor-ligand interactions also appear to mediate eosinophil recruitment. The availability of genetically unique strains of mice permits a reductionist approach to assess the signaling pathways in experimental models of human disease. However, despite similarities in these pathways between mice and humans, significant species differences exist, complicating the translation of results from animal models to humans. Purified mouse eosinophils were used in this study to investigate the chemokine receptor expression and the activities of 18 chemokines. Mouse eosinophils isolated from IL-5 transgenic mice expressed transcripts encoding the chemokine receptors CCR1, CCR2, CCR3, CCR5, CCR8, CXCR2, and CXCR4, but not CCR4. Mouse eosinophils also migrated in response to human and mouse eotaxin-1 and -2, but not human eotaxin-3. In addition, the induced migration of mouse eosinophils by TARC, MIP-1beta, and KC suggests that unidentified receptor-ligand interactions contribute to eosinophil recruitment. It is interesting that the potent chemoattractant of human eosinophils, RANTES, was unable to mediate mouse eosinophil migration. Furthermore, despite the ability of MIP-1alpha to bind receptors on purified mouse eosinophils, it was only able to induce significant eosinophil migration in a mixed splenocyte population and was unable to induce migration of highly purified eosinophils. Collectively, these observations reveal physiologically relevant distinctions in mechanisms mediating human and mouse eosinophil migration that potentially reflect evolutionary disparities between these species.

MeSH Terms
Amino Acid Sequence Animals Calcium/blood Chemokine CCL5/genetics Chemotaxis, Leukocyte/physiology Eosinophils/immunology,physiology Humans Ligands Lymphocytes/immunology Mice Molecular Sequence Data Phylogeny Receptors, CCR3 Receptors, Chemokine/blood,chemistry,genetics,physiology Reverse Transcriptase Polymerase Chain Reaction Sequence Alignment Sequence Homology, Amino Acid Spleen/cytology
Chemicals
CCR3 protein, human Ccr3 protein, mouse Chemokine CCL5 Ligands Receptors, CCR3 Receptors, Chemokine Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Borchers Michael T
Mayo Clinic Scottsdale, Scottsdale, Arizona 85259, USA.
Ansay Tracy
DeSalle Rob
Daugherty Bruce L
Shen Huahao
Metzger Michael
Lee Nancy A
Lee James J
Article Info
Journal
Journal of leukocyte biology
Abbr.
J Leukoc Biol
ISSN
0741-5400
Published
2002-06-00
Pages
1033-41
Language
English
Region
United States
NLM ID
8405628
Subset
IM
Grants
NHLBI NIH HHS · HL60793-01S · United States
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