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乳铁蛋白对脂多糖和脂质A失活的生物物理特性研究

Biophysical characterization of lipopolysaccharide and lipid A inactivation by lactoferrin.

作者信息

Brandenburg K, Jürgens G, Müller M, Fukuoka S, Koch M H

机构信息

Forschungszentrum Borstel, Abteilung Biophysik, Germany.

出版信息

Biol Chem. 2001 Aug;382(8):1215-25. doi: 10.1515/BC.2001.152.

Abstract

The interaction of bacterial endotoxins (LPS Re and lipid A, the 'endotoxic principle' of LPS) with the endogenous antibiotic lactoferrin (LF) was investigated using various physical techniques and biological assays. By applying Fourier-transform infrared (FTIR) spectroscopy, we find that LF binds to the phosphate group within the lipid A part and induces a rigidification of the acyl chains of LPS. The secondary structure of the protein - as monitored by the amide I band - is, however, not changed. Concomitant with the IR data, scanning calorimetric data indicate a sharpening of the acyl chain phase transition. From titration calorimetric and zeta potential data, saturation of LF binding to LPS was found to lie at a [LF]:[LPS] ratio of 1:3 to 1:5 M from the former and 1:10 M from the latter technique. X-ray scattering data indicate a change of the lipid A aggregate structure from inverted cubic to multilamellar, and with fluorescence (FRET) spectroscopy, LF is shown to intercalate by itself into phospholipid liposomes and may also block the lipopolysaccharide-binding protein (LBP)-induced intercalation of LPS. The LPS-induced cytokine production of human mononuclear cells exhibits a decrease due to LF binding, whereas the coagulation of amebocyte lysate in the Limulus test exhibited concentration-dependent changes. Based on these results, a model for the mechanisms of endotoxin inactivation by LF is proposed.

摘要

利用各种物理技术和生物学测定方法,研究了细菌内毒素(脂多糖受体和脂多糖的“内毒素核心成分”脂多糖A)与内源性抗生素乳铁蛋白(LF)之间的相互作用。通过应用傅里叶变换红外(FTIR)光谱,我们发现LF与脂多糖A部分的磷酸基团结合,并导致脂多糖酰基链刚性化。然而,通过酰胺I带监测的蛋白质二级结构并未改变。与红外数据一致,扫描量热数据表明酰基链相变锐化。从滴定量热和zeta电位数据来看,前者显示LF与脂多糖结合的饱和度处于[LF]:[LPS]比例为1:3至1:5 M,后者则为1:10 M。X射线散射数据表明脂多糖A聚集体结构从反立方相变为多层相,并且通过荧光(FRET)光谱显示,LF自身可插入磷脂脂质体,还可能阻断脂多糖结合蛋白(LBP)诱导的脂多糖插入。由于LF结合,人单核细胞的脂多糖诱导的细胞因子产生减少,而鲎试剂试验中变形细胞溶解物的凝固表现出浓度依赖性变化。基于这些结果,提出了LF对内毒素失活机制的模型。

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