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Lactoferrin Inhibits the Endotoxin Interaction with CD14 by Competition with the Lipopolysaccharide-Binding Protein

机译:乳铁蛋白通过与脂多糖结合蛋白竞争抑制内毒素与CD14的相互作用

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摘要

Human lactoferrin (hLf), a glycoprotein released from neutrophil granules during inflammation, and the lipopolysaccharide (LPS)-binding protein (LBP), an acute-phase serum protein, are known to bind to the lipid A of LPS. The LPS-binding sites are located in the N-terminal regions of both proteins, at amino acid residues 28 to 34 of hLf and 91 to 108 of LBP. Both of these proteins modulate endotoxin activities, but they possess biologically antagonistic properties. In this study, we have investigated the competition between hLf and recombinant human LBP (rhLBP) for the binding of Escherichia coli 055:B5 LPS to the differentiated monocytic THP-1 cell line. Our studies revealed that hLf prevented the rhLBP-mediated binding of LPS to the CD14 receptor on cells. Maximal inhibition of LPS-cell interactions by hLf was raised when both hLf and rhLBP were simultaneously added to LPS or when hLf and LPS were mixed with cells 30 min prior to the incubation with rhLBP. However, when hLf was added 30 min after the interaction of rhLBP with LPS, the binding of the rhLPS-LBP complex to CD14 could not be reversed. These observations indicate that hLf competes with rhLBP for the LPS binding and therefore interferes with the interaction of LPS with CD14. Furthermore, experiments involving competitive binding of the rhLBP-LPS complex to cells with two recombinant mutated hLfs show that in addition to residues 28 to 34, another basic cluster which contains residues 1 to 5 of hLf competes for the binding to LPS. Basic sequences homologous to residues 28 to 34 of hLf were evidenced on LPS-binding proteins such as LBP, bactericidal/permeability-increasing protein, and Limulus anti-LPS factor.
机译:众所周知,人乳铁蛋白(hLf)是炎症过程中从嗜中性粒细胞释放的糖蛋白,而脂多糖(LPS)结合蛋白(LBP)是一种急性期血清蛋白,可以与LPS的脂质A结合。 LPS结合位点位于两种蛋白质的N末端区域中,在hLf的氨基酸残基28至34和LBP的氨基酸残基91至108。这两种蛋白均调节内毒素活性,但它们具有生物学拮抗特性。在这项研究中,我们调查了hLf和重组人LBP(rhLBP)之间的竞争,以将大肠杆菌055:B5 LPS与分化的单核THP-1细胞系结合。我们的研究表明,hLf阻止了rhLBP介导的LPS与细胞CD14受体的结合。当将hLf和rhLBP同时添加到LPS或在与rhLBP孵育前30分钟将hLf和LPS与细胞混合时,hLf可以最大程度地抑制LPS与细胞的相互作用。但是,当在rhLBP与LPS相互作用后30分钟添加hLf时,rhLPS-LBP复合物与CD14的结合无法逆转。这些观察结果表明,hLf与rhLBP竞争LPS结合,因此会干扰LPS与CD14的相互作用。此外,涉及rhLBP-LPS复合物与具有两个重组突变hLfs的细胞的竞争性结合的实验表明,除残基28至34外,另一个含有hLf残基1至5的基本簇竞争与LPS的结合。在LPS结合蛋白(如LBP,杀菌/通透性增强蛋白和Li抗LPS因子)上证实了与hLf残基28至34同源的基本序列。

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