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基于流动的香豆素磷脂酰乙醇胺探针的生物偶联:优化合成和膜分子动力学研究。

Flow-based bioconjugation of coumarin phosphatidylethanolamine probes: Optimised synthesis and membrane molecular dynamics studies.

机构信息

LAQV, REQUIMTE, Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, Rua de Jorge Viterbo Ferreira 228, 4050-313 Porto, Portugal.

Department of Chemistry, King's College London, 7 Trinity Street, London SE1 1DB, United Kingdom.

出版信息

Biochim Biophys Acta Biomembr. 2024 Oct;1866(7):184335. doi: 10.1016/j.bbamem.2024.184335. Epub 2024 May 18.

Abstract

A series of phosphatidylethanolamine fluorescent probes head-labelled with 3-carboxycoumarin was prepared by an improved bioconjugation approach through continuous flow synthesis. The established procedure, supported by a design of experiment (DoE) set-up, resulted in a significant reduction in the reaction time compared to the conventional batch method, in addition to a minor yield increase. The characterization of these probes was enhanced by an in-depth molecular dynamics (MD) study of the behaviour of a representative probe of this family, 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoethanolamine labelled with 3-carboxycoumarin (POPE-COUM), in bilayers of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC)/1-stearoyl-2-linoleoyl-sn-glycero-3-phosphocholine (SLPC) 2:1, mimicking the composition of the egg yolk lecithin membranes recently used experimentally by our group to study POPE-COUM as a biomarker of the oxidation state and integrity of large unilamellar vesicles (LUVs). The MD simulations revealed that the coumarin group is oriented towards the bilayer interior, leading to a relatively internal location, in agreement with what is observed in the nitrobenzoxadiazole fluorophore of commercial head-labelled NBD-PE probes. This behaviour is consistent with the previously stated hypothesis that POPE-COUM is entirely located within the LUVs structure. Hence, the delay on the oxidation of the probe in the oxygen radical absorbance capacity (ORAC) assays performed is related with the inaccessibility of the probe until alteration of the LUV structure occurs. Furthermore, our simulations show that POPE-COUM exerts very little global and local perturbation on the host bilayer, as evaluated by key properties of the unlabelled lipids. Together, our findings establish PE-COUM as suitable fluorescent lipid analogue probes.

摘要

一系列以 3-羧基香豆素为头部标记的磷脂酰乙醇胺荧光探针通过连续流合成的改良生物偶联方法制备。与传统的分批方法相比,该方法通过实验设计(DoE)设置支持,显著缩短了反应时间,同时产量略有增加。通过对该家族的代表性探针 1-棕榈酰-2-油酰-sn-甘油-3-磷酸乙醇胺标记的 3-羧基香豆素(POPE-COUM)在 1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱(POPC)/1-硬脂酰-2-亚油酰-sn-甘油-3-磷酸胆碱(SLPC)2:1 双层中的行为进行深入的分子动力学(MD)研究,增强了这些探针的表征,模拟了我们小组最近在实验中用于研究 POPE-COUM 作为大单层囊泡(LUVs)氧化状态和完整性生物标志物的蛋黄卵磷脂膜的组成。MD 模拟表明香豆素基团朝向双层内部,导致相对内部位置,与商业头部标记的 NBD-PE 探针的硝基苯并恶二唑荧光团中观察到的位置一致。这种行为与先前提出的假设一致,即 POPE-COUM 完全位于 LUVs 结构内。因此,在进行的氧自由基吸收能力(ORAC)测定中探针氧化延迟与探针的不可及性有关,直到 LUV 结构发生变化为止。此外,我们的模拟表明,POPE-COUM 对宿主双层施加的全局和局部扰动非常小,如未标记脂质的关键性质所评估的那样。总之,我们的研究结果确立了 POPE-COUM 作为合适的荧光脂质类似物探针。

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