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首页> 外文期刊>Membranes >Interaction Study of Phospholipid Membranes with an N-Glucosylated β-Turn Peptide Structure Detecting Autoantibodies Biomarkers of Multiple Sclerosis
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Interaction Study of Phospholipid Membranes with an N-Glucosylated β-Turn Peptide Structure Detecting Autoantibodies Biomarkers of Multiple Sclerosis

机译:磷脂膜与N-糖基化β-转肽结构相互作用检测多发性硬化症自身抗体生物标志物的研究

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The interaction of lipid environments with the type I’ β-turn peptide structure called CSF114 and its N-glucosylated form CSF114(Glc), previously developed as a synthetic antigenic probe recognizing specific autoantibodies in a subpopulation of multiple sclerosis patients’ serum, was investigated by fluorescence spectroscopy and electrochemical experiments using large unilamellar vesicles, mercury supported lipid self-assembled monolayers (SAMs) and tethered bilayer lipid membranes (tBLMs). The synthetic antigenic probe N-glucosylated peptide CSF114(Glc) and its unglucosylated form interact with the polar heads of lipid SAMs of dioleoylphosphatidylcholine at nonzero transmembrane potentials, probably establishing a dual electrostatic interaction of the trimethylammonium  and phosphate groups of the phosphatidylcholine polar head with the Glu5 and His9 residues on the opposite ends of the CSF114(Glc) β-turn encompassing residues 6-9. His9 protonation at pH 7 eliminates this dual interaction. CSF114(Glc) is adsorbed on top of SAMs of mixtures of dioleoylphosphatidylcholine with sphingomyelin, an important component of myelin, whose proteins are hypothesized to undergo an aberrant N-glucosylation triggering the autoimmune response. Incorporation of the type I’ β-turn peptide structure CSF114 into lipid SAMs by potential scans of electrochemical impedance spectroscopy induces defects causing a slight permeabilization toward cadmium ions. The N-glucopeptide CSF114(Glc) does not affect  tBLMs to a detectable extent.
机译:研究了脂质环境与称为CSF114的I'β-转肽结构及其N-葡萄糖基化形式CSF114(Glc)的相互作用,该结构先前已开发为可在多发性硬化症患者血清亚群中识别特定自身抗体的合成抗原探针。通过荧光光谱法和电化学实验,使用大的单层囊泡,汞支持的脂质自组装单层(SAM)和栓系双层脂质膜(tBLM)。合成的抗原探针N-葡萄糖基化肽CSF114(Glc)及其未糖基化形式在非零跨膜电势下与油酰磷脂酰胆碱的脂质SAMs的极性头相互作用,可能建立了磷脂酰胆碱极性头的三甲基铵和磷酸基与磷脂酰胆碱的双静电相互作用CSF114(Glc)β-转角相反末端的Glu 5 和His 9 残基,残基6-9。在pH 7下的His 9 质子消除了这种双重相互作用。 CSF114(Glc)吸附在油酰磷脂酰胆碱与鞘磷脂(髓磷脂的重要组成部分)的混合物的SAMs顶部,假设其蛋白发生异常的N-糖基化,从而触发自身免疫反应。通过电化学阻抗谱的电势扫描将I型β-转肽结构CSF114掺入脂质SAM中会引起缺陷,从而导致对镉离子的轻微通透性。 N-葡萄糖肽CSF114(Glc)在可检测的范围内不会影响tBLM。

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