Iron chelator induces MIP-3α/CCL20 in human intestinal epithelial cells: implication for triggering mucosal adaptive immunity

A previous report by this laboratory demonstrated that bacterial iron chelator (siderophore) triggers inflammatory signals, including the production of CXC chemokine IL-8, in human intestinal epithelial cells (IECs). Microarray-based gene expression profiling revealed that iron chelator also induces...

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Veröffentlicht in:Experimental & molecular medicine 2005, 37(4), , pp.297-310
Hauptverfasser: 이현주, 최석채, 최은영, 이무형, Geom-Seog Seo, 김은철, 양봉준, 이명수, 신영일, 박계인, 전창덕
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Zusammenfassung:A previous report by this laboratory demonstrated that bacterial iron chelator (siderophore) triggers inflammatory signals, including the production of CXC chemokine IL-8, in human intestinal epithelial cells (IECs). Microarray-based gene expression profiling revealed that iron chelator also induces macrophage inflammatory protein 3 alpha (MIP-3α)/ CC chemokine-ligand 20 (CCL20). As CCL20 is chemotactic for the cells involved in host adaptive immunity, this suggests that iron chelator may stimulate IECs to have the capacity to link mucosal innate and adaptive immunity. The basal medium from iron chelator deferoxamine (DFO)-treated HT-29 monolayers was as chemotactic as recom - binant human CCL20 at equivalent concentrations to attract CCR6+ cells. The increase of CCL20 protein secretion appeared to correspond to that of CCL20 mRNA levels, as determined by real-time quantitative RT-PCR. The efficacy of DFO at inducing CCL20 mRNA was also observed in human PBMCs and in THP-1 cells, but not in human umbilical vein end - othelial cells. Interestingly, unlike other proinflam - matory cytokines, such as TNF-α and IL-1β, a time-dependent experiment revealed that DFO slowly in - duces CCL20, suggesting a novel mechanism of action. A pharmacologic study also revealed that multiple signaling pathways are differentially in - volved in CCL20 production by DFO, while some of those pathways are not involved in TNF-α-induced CCL20 production. Collectively, these results demonstrate that, in addition to some bacterial pro - ducts known to induce host adaptive immune responses, direct chelation of host iron by infected bacteria may also contribute to the initiation of host adaptive immunity in the intestinal mucosa. KCI Citation Count: 18
ISSN:1226-3613
2092-6413