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Label-free sensing on supported lipid bilayers.

机译:在支持的脂质双层上的无标记感测。

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摘要

Cell membranes are integral for m any biological processes. In addition to containing and protecting cellular contents and maintaining the chemical integrity of the cell, these interfaces host a variety of ligand-receptor interactions. These ligand-receptor interactions are important for cell signaling and transport and the ability to monitor them is key to understanding these processes. In addition, therapeutics and drug discovery is also aided by membrane-specific study, as the majority of drugs target receptors associated with the cell surface.;The cell membrane can be effectively mimicked by the use of supported lipid bilayers, which provide a robust platform exhibiting the lateral fluidity and composition associated with cell membranes. The ability to study both ligand-receptor interactions as well as small molecule-membrane interactions on these model membranes is aided by the fact that these assays can be multiplexed and are amenable to use with low sample volumes with high throughput.;Our laboratory has recently developed a strategy for fluorescent microscopy studies of ligand-receptor interactions on supported lipid bilayers without the use of fluorescently-labeled analytes. This technique involves the incorporation of pH-sensitive fluorophores into the composition of the supported lipid bilayer as embedded reporter dyes. It was determined that this assay can operate as either a "turn-on" or a "turn-off" sensor depending on the analyte to be detected. It was additionally found that modulating the ionic strength of the operating buffer allows for tuning the operating pH and sensitivity of the assay.;This label-free technique can be utilized to monitor small peptide interactions with bilayers containing specific phospholipids. Basic amino acid sequences which are associated with transporting contents across membranes or anti-microbial activity can be monitored binding to negatively charged bilayers without the use of labels. Not only is this a sensitive technique for detecting small peptides, but thermodynamic data can be extracted as well.;In a final set of experiments, the interaction of proteins with phosphatidylserine (PS) in supported lipid bilayers is observed by utilizing PS-Cu2+-induced quenching of fluorophores. Disruption of this metal-phospholipid, specifically by Ca2+-dependent protein kinases, results in a turn-on fluorescent assay, which can be used to monitor the binding of the protein to PS and the effects of other metal interference.
机译:细胞膜对于任何生物过程都是必不可少的。除了包含和保护细胞内容物并维持细胞的化学完整性外,这些界面还具有多种配体-受体相互作用。这些配体-受体相互作用对于细胞信号传导和转运很重要,监测它们的能力是了解这些过程的关键。此外,膜特异性研究也有助于治疗和药物发现,因为大多数药物靶向与细胞表面相关的受体。通过使用支持的脂质双层可以有效地模仿细胞膜,这提供了一个强大的平台表现出与细胞膜相关的横向流动性和组成。研究可以在这些模型膜上进行多重分析,并适合用于低样品量和高通量的事实,这有助于研究这些模型膜上的配体-受体相互作用以及小分子-膜相互作用。他开发了一种在不使用荧光标记分析物的情况下对支持的脂质双层上的配体-受体相互作用进行荧光显微镜研究的策略。该技术涉及将pH敏感的荧光团作为嵌入的报告染料掺入负载的脂质双层的组合物中。已经确定,取决于待检测的分析物,该测定可以用作“开启”或“关闭”传感器。此外还发现,调节操作缓冲液的离子强度可调节操作pH和测定的灵敏度。该无标记技术可用于监测小肽与含有特定磷脂的双层的相互作用。可以监测与跨膜转运内容物或抗微生物活性相关的基本氨基酸序列,而无需使用标记就可以与带负电荷的双层结合。这不仅是检测小肽的灵敏技术,而且还可以提取热力学数据。在最后一组实验中,通过利用PS-Cu2 +-观察了蛋白质与支持的脂质双层中磷脂酰丝氨酸(PS)的相互作用。诱导荧光团的淬灭。破坏这种金属磷脂,特别是通过依赖Ca2 +的蛋白激酶破坏,会导致开启荧光分析,可用于监测蛋白质与PS的结合以及其他金属干扰的影响。

著录项

  • 作者

    Robison, Aaron Douglass.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Analytical chemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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