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The effects of lipids and surfactants on TLR5-proteoliposome functionality for flagellin detection using surface plasmon resonance biosensing

机译:脂质和表面活性剂对使用表面等离子体共振生物传感检测鞭毛蛋白的TLR5-蛋白脂质体功能的影响

摘要

The use of proteoliposomes as affinity elements in conjunction with a surface plasmon resonance sensor is a high-sensitivity alternative for the detection of multiple analytes. However, one of the most important aspects of these conformations is maintaining the functionality of the immobilized protein, which is determined by the choice of lipids and surfactants employed in the reconstitutions. Previously, we demonstrated the functionality of TLR5-proteoliposomes as screening affinity elements of bacterial flagellin. In this new study we change the conditions of immobilization of TLR5 and evaluate how the fluidity of the membrane and the final size of the liposomes affect the functionality of the construct and thus increase their utility as an affinity element for design of new biosensors. In particular, we used reconstructions into preformed liposomes composed of the lipids POPC, POPC-DMPC and POPC-POPE mediated by the use of surfactants OG, Triton X100, and DDM, respectively. The affinity results were evaluated by SPR technology proteoliposomes and were correlated with the anisotropic change in the membrane status; the final sizes of the proteoliposomes were estimated. Our results clearly show the dependence of fluidity and final size of the proteoliposomes with surface plasmon resonance affinity measurements.
机译:与表面等离振子共振传感器一起使用蛋白脂质体作为亲和元素是检测多种分析物的高灵敏度替代方法。但是,这些构象的最重要方面之一是保持固定化蛋白质的功能,这取决于重构中所用脂质和表面活性剂的选择。以前,我们展示了TLR5-蛋白脂质体作为细菌鞭毛蛋白亲和力分子筛选的功能。在这项新的研究中,我们改变了TLR5的固定条件,并评估了膜的流动性和脂质体的最终尺寸如何影响构建体的功能,从而提高了其作为亲和性元件设计新生物传感器的效用。特别是,我们分别使用了表面活性剂OG,Triton X100和DDM介导的脂质体重构了由脂质POPC,POPC-DMPC和POPC-POPE组成的预制脂质体。亲和力结果通过SPR技术的蛋白脂质体进行了评估,并与膜状态的各向异性变化相关。估计脂质体的最终大小。我们的结果清楚地显示了表面脂质共振共振亲和力测量对脂质体流动性和最终大小的依赖性。

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