首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >How to minimize dye-induced perturbations while studying biomembrane structure and dynamics: PEG linkers as a rational alternative
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How to minimize dye-induced perturbations while studying biomembrane structure and dynamics: PEG linkers as a rational alternative

机译:如何最小化染料诱导的扰动,同时研究生物膜结构和动力学:PEG接头作为理性替代品

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摘要

Organic dye-tagged lipid analogs are essential for many fluorescence-based investigations of complex membrane structures, especially when using advanced microscopy approaches. However, lipid analogs may interfere with membrane structure and dynamics, and it is not obvious that the properties of lipid analogs would match those of non-labeled host lipids. In this work, we bridged atomistic simulations with super-resolution imaging experiments and biomimetic membranes to assess the performance of commonly used sphingomyelin-based lipid analogs. The objective was to compare, on equal footing, the relative strengths and weaknesses of acyl chain labeling, headgroup labeling, and labeling based on poly-ethyl-glycol (PEG) linkers in determining biomembrane properties. We observed that the most appropriate strategy to minimize dye-induced membrane perturbations and to allow consideration of Brownian-like diffusion in liquid-ordered membrane environments is to decouple the dye from a membrane by a PEG linker attached to a lipid headgroup. Yet, while the use of PEG linkers may sound a rational and even an obvious approach to explore membrane dynamics, the results also suggest that the dyes exploiting PEG linkers interfere with molecular interactions and their dynamics. Overall, the results highlight the great care needed when using fluorescent lipid analogs, in particular accurate controls.
机译:有机染料标记的脂质类似物对于许多基于荧光的复合膜结构研究至关重要,特别是在使用先进的显微镜接近时。然而,脂质类似物可能干扰膜结构和动力学,并且脂质类似物的性质与非标记的宿主脂质的性质不明显。在这项工作中,我们与超分辨率成像实验和仿生膜桥接原子模拟,以评估常用的鞘氨酰胺脂质类似物的性能。该目的是在等于基础上比较酰基链标记,头组标记和基于聚乙二醇(PEG)接头的相对强度和缺点在确定生物膜性质中的基础上。我们观察到最大限度地减少染料膜扰动和允许考虑液体有序膜环境中的褐色样扩散的最合适的策略是通过连接到脂质头组的PEG接头与膜中的染料分离。然而,虽然使用PEG接头可能听起来一种理性甚至是探索膜动力学的明显方法,但结果还表明利用PEG接头的染料干扰分子相互作用及其动力学。总体而言,结果突出了使用荧光脂质类似物,特别是准确的对照时所需的优点。

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