首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Platelet factor 4 binding to lipid A of Gram-negative bacteria exposes PF4/heparin-like epitopes
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Platelet factor 4 binding to lipid A of Gram-negative bacteria exposes PF4/heparin-like epitopes

机译:血小板因子4与革兰氏阴性细菌的脂质A结合可暴露PF4 /肝素样表位

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摘要

The positively charged chemokine platelet factor 4 (PF4) forms immunogenic complexes with heparin and other polyanions. Resulting antibodies can induce the adverse drug effect heparin-induced thrombocytopenia. PF4 also binds to bacteria, thereby exposing the same neoantigen(s) as with heparin. In this study, we identified the negatively charged lipopolysaccharide (LPS) as the PF4 binding structure on Gram-negative bacteria. We demonstrate by flow cytometry that mutant bacteria with progressively truncated LPS structures show increasingly enhanced PF4 binding activity. PF4 bound strongest to mutants lacking the O-antigen and core structure of LPS, but still exposing lipid A on their surfaces. Strikingly, PF4 bound more efficiently to bisphosphorylated lipid A than to monophosphorylated lipid A, suggesting that phosphate residues of lipid Amediate PF4 binding. Interactions of PF4 with Gram-negative bacteria, where only the lipid A part of LPS is exposed, induce epitopes on PF4 resembling those on PF4/heparin complexes as shown by binding of human anti-PF4 heparin antibodies. As both the lipid A on the surface of Gram-negative bacteria and the amino acids of PF4 contributing to polyanion binding are highly conserved, our results further support the hypothesis that neoepitope formation on PF4 after binding to bacteria is an ancient host defense mechanism.
机译:带正电的趋化因子血小板因子4(PF4)与肝素和其他聚阴离子形成免疫原性复合物。产生的抗体可诱导肝素诱导的血小板减少症的药物不良作用。 PF4还与细菌结合,从而暴露出与肝素相同的新抗原。在这项研究中,我们确定了带负电荷的脂多糖(LPS)为革兰氏阴性细菌上的PF4结合结构。我们通过流式细胞仪证明,具有逐渐截断的LPS结构的突变细菌显示越来越增强的PF4结合活性。 PF4与缺乏L-抗原和LPS核心结构的突变体结合最强,但仍然在其表面上暴露脂质A。令人惊讶的是,PF4与双磷酸化脂质A的结合比与单磷酸化脂质A的结合更有效,表明脂质A4的磷酸酯残基介导了PF4的结合。 PF4与革兰氏阴性细菌的相互作用(仅暴露LPS的脂质A部分)可诱导PF4上的表位,类似于人抗PF4肝素抗体的结合,显示出与PF4 /肝素复合物类似的表位。由于革兰氏阴性细菌表面的脂质A和有助于聚阴离子结合的PF4氨基酸都是高度保守的,因此我们的结果进一步支持了这样的假说,即与细菌结合后PF4上新表位的形成是古老的宿主防御机制。

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