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首页> 外文期刊>The biochemical journal >Mechanism of interaction of optimized Limulus-derived cyclic peptides with endotoxins: thermodynamic, biophysical and microbiological analysis
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Mechanism of interaction of optimized Limulus-derived cyclic peptides with endotoxins: thermodynamic, biophysical and microbiological analysis

机译:优化的Li衍生环肽与内毒素相互作用的机理:热力学,生物物理和微生物学分析

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pOn the basis of formerly investigated peptides corresponding to the endotoxin-binding domain from LALF [iLimulus/i anti-LPS (lipopolysaccharide) factor], a protein from iLimulus polyphemus/i, we have designed and synthesized peptides of different lengths with the aim of obtaining potential therapeutic agents against septic shock syndrome. For an understanding of the mechanisms of action, we performed a detailed physicochemical and biophysical analysis of the interaction of rough mutant LPS with these peptides by applying FTIR (Fourier-transform infrared) spectroscopy, SAXS (small-angle X-ray scattering), calorimetric techniques [DSC (differential scanning calorimetry) and ITC (isothermal titration calorimetry)] and FFTEM (freeze-fracture transmission electron microscopy). Also, the action of the peptides on bacteria of different origin in microbial assays was investigated. Using FTIR and DSC, our results indicated a strong fluidization of the lipid A acyl chains due to peptide binding, with a decrease in the endothermic melting enthalpy change of the acyl chains down to a complete disappearance in the 1:0.5 to 1:2 [LPS]:[peptide] molar ratio range. Via ITC, it was deduced that the binding is a clearly exothermic process which becomes saturated at a 1:0.5 to 1:2 [LPS]:[peptide] molar ratio range. The results obtained with SAXS indicated a drastic change of the aggregate structures of LPS into a multilamellar stack, which was visualized in electron micrographs as hundreds of lamellar layers. This can be directly correlated with the inhibition of the LPS-induced production of tumour necrosis factor α in human mononuclear cells, but not with the action of the peptides on bacteria./p
机译:>根据先前研究的与来自LALF [ Limulus 抗-LPS(脂多糖)因子](一种来自 Limulus polyphemus 的蛋白质)的内毒素结合结构域相对应的肽,我们已经设计并合成了不同长度的肽,目的是获得针对败血性休克综合症的潜在治疗剂。为了了解作用机理,我们通过应用傅立叶变换红外光谱(傅里叶变换红外),SAXS(小角度X射线散射),量热法对粗糙的突变型LPS与这些肽的相互作用进行了详细的理化和生物物理分析。技术[DSC(差示扫描量热法)和ITC(等温滴定量热法)]和FFTEM(冷冻断裂透射电子显微镜)。另外,在微生物测定中还研究了肽对不同来源的细菌的作用。使用FTIR和DSC,我们的结果表明,由于肽的结合,脂质A酰基链发生了强烈的流态化,酰基链的吸热熔融焓变降低,直至在1:0.5至1:2完全消失[ LPS]:[肽]摩尔比范围。通过ITC,推断结合是明显的放热过程,在[LPS]:[肽]摩尔比范围为1:0.5至1:2时饱和。用SAXS获得的结果表明,LPS的聚集体结构发生了剧烈变化,变成了多层堆叠,这在电子显微照片中可视为数百个层状层。这可能与抑制LPS诱导的人单核细胞中肿瘤坏死因子α的产生有关,而与肽对细菌的作用没有直接关系。

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