Department of Biotechnology and Molecular Biology, University of Opole, Kominka 6, 45-032, Opole, Poland.
Cell Mol Biol Lett. 2013 Dec;18(4):579-94. doi: 10.2478/s11658-013-0108-x. Epub 2013 Nov 30.
Polysialic acids are linear polysaccharides composed of sialic acid monomers. These polyanionic chains are usually membrane-bound, and are expressed on the surfaces of neural, tumor and neuroinvasive bacterial cells. We used toluidine blue spectroscopy, the Langmuir monolayer technique and fluorescence spectroscopy to study the effects of membrane surface potential and transmembrane potential on the binding of polysialic acids to lipid bilayers and monolayers. Polysialic acid free in solution was added to the bathing solution to assess the metachromatic shift in the absorption spectra of toluidine blue, the temperature dependence of the fluorescence anisotropy of DPH in liposomes, the limiting molecular area in lipid monolayers, and the fluorescence spectroscopy of oxonol V in liposomes. Our results show that both a positive surface potential and a positive transmembrane potential inside the vesicles can facilitate the binding of polysialic acid chains to model lipid membranes. These observations suggest that these membrane potentials can also affect the polysialic acid-mediated interaction between cells.
唾液酸多聚体是由唾液酸单体组成的线性多糖。这些带负电荷的链通常是膜结合的,并在神经、肿瘤和神经侵袭性细菌细胞的表面表达。我们使用甲苯胺蓝光谱法、Langmuir 单层技术和荧光光谱法研究了膜表面电势和跨膜电势对唾液酸多聚体与脂质双层和单层结合的影响。将游离于溶液中的唾液酸多聚体添加到浴液中,以评估甲苯胺蓝吸收光谱的变色位移、DPH 在脂质体中的荧光各向异性的温度依赖性、脂质单层中的极限分子面积以及脂质体中 oxonol V 的荧光光谱。我们的结果表明,囊泡内的正表面电势和正跨膜电势都可以促进唾液酸多聚体链与模型脂质膜的结合。这些观察结果表明,这些膜电势也可以影响唾液酸多聚体介导的细胞间相互作用。