Literature DB >> 10488147

Molecular cloning of a novel human CC chemokine (Eotaxin-3) that is a functional ligand of CC chemokine receptor 3.

M Kitaura1, N Suzuki, T Imai, S Takagi, R Suzuki, T Nakajima, K Hirai, H Nomiyama, O Yoshie.   

Abstract

Previously, we mapped the novel CC chemokine myeloid progenitor inhibitory factor 2 (MPIF-2)/eotaxin-2 to chromosome 7q11.23 (Nomiyama, H., Osborne, L. R., Imai, T., Kusuda, J., Miura, R., Tsui, L.-C., and Yoshie, O. (1998) Genomics 49, 339-340). Since chemokine genes tend to be clustered, unknown chemokines may be present in the vicinity of those mapped to new chromosomal loci. Prompted by this hypothesis, we analyzed the genomic region containing the gene for MPIF-2/eotaxin-2 (SCYA24) and have identified a novel CC chemokine termed eotaxin-3. The genes for MPIF-2/eotaxin-2 (SCYA24) and eotaxin-3 (SCYA26) are localized within a region of approximately 40 kilobases. By Northern blot analysis, eotaxin-3 mRNA was constitutively expressed in the heart and ovary. We have generated recombinant eotaxin-3 in a baculovirus expression system. Eotaxin-3 induced transient calcium mobilization specifically in CC chemokine receptor 3 (CCR3)-expressing L1.2 cells with an EC(50) of 3 nM. Eotaxin-3 competed the binding of (125)I-eotaxin to CCR3-expressing L1.2 cells with an IC(50) of 13 nM. Eotaxin-3 was chemotactic for normal peripheral blood eosinophils and basophils at high concentrations. Collectively, eotaxin-3 is yet another functional ligand for CCR3. The potency of eotaxin-3 as a CCR3 ligand seems, however, to be approximately 10-fold less than that of eotaxin. Identification of eotaxin-3 will further promote our understanding of the control of eosinophil trafficking and other CCR3-mediated biological phenomena. The strategy used in this study may also be applicable to identification of other unknown chemokine genes.

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Year:  1999        PMID: 10488147     DOI: 10.1074/jbc.274.39.27975

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  47 in total

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Authors:  Patricia C Fulkerson; Marc E Rothenberg
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5.  Chronic aeroallergen during infancy enhances eotaxin-3 expression in airway epithelium and nerves.

Authors:  Debbie L Chou; Bruce L Daugherty; Erin K McKenna; Willy M Hsu; Nancy K Tyler; Charles G Plopper; Dallas M Hyde; Edward S Schelegle; Laurel J Gershwin; Lisa A Miller
Journal:  Am J Respir Cell Mol Biol       Date:  2005-04-15       Impact factor: 6.914

6.  Association of eotaxin-2 gene polymorphisms with plasma eotaxin-2 concentration.

Authors:  Ji-Won Min; June-Hyuk Lee; Choon-Sik Park; Hun Soo Chang; Tai Youn Rhim; Sung-Woo Park; An-Soo Jang; Hyoung-Doo Shin
Journal:  J Hum Genet       Date:  2005-03-03       Impact factor: 3.172

Review 7.  Mechanism of eosinophilic esophagitis.

Authors:  Anil Mishra
Journal:  Immunol Allergy Clin North Am       Date:  2009-02       Impact factor: 3.479

Review 8.  Chemotactic factors associated with eosinophilic gastrointestinal diseases.

Authors:  Carine Blanchard; Marc E Rothenberg
Journal:  Immunol Allergy Clin North Am       Date:  2009-02       Impact factor: 3.479

9.  Macrophages and cardiac fibroblasts are the main producers of eotaxins and regulate eosinophil trafficking to the heart.

Authors:  Nicola L Diny; Xuezhou Hou; Jobert G Barin; Guobao Chen; Monica V Talor; Julie Schaub; Stuart D Russell; Karin Klingel; Noel R Rose; Daniela Čiháková
Journal:  Eur J Immunol       Date:  2016-10-25       Impact factor: 5.532

10.  Regulation of eotaxin-3/CCL26 expression in human monocytic cells.

Authors:  Victoria E L Stubbs; Christopher Power; Kamala D Patel
Journal:  Immunology       Date:  2010-01-06       Impact factor: 7.397

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