首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Location of fluorescent probes (2 '-hydroxy derivatives of 2,5-diaryl-1,3-oxazole) in lipid membrane studied by fluorescence spectroscopy and molecular dynamics simulation
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Location of fluorescent probes (2 '-hydroxy derivatives of 2,5-diaryl-1,3-oxazole) in lipid membrane studied by fluorescence spectroscopy and molecular dynamics simulation

机译:通过荧光光谱和分子动力学模拟研究的脂质膜中荧光探针(2,5-二芳基-1,3-氧唑的2,5-二芳基-1,3-氧唑的位置)

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摘要

2'-Hydroxy derivatives of 2,5-diaryl-1,3-oxazole are known as environment-sensitive ratiometric excited-state intramolecular proton transfer (ESIPT) fluorescent probes, which are used to monitor physicochemical properties of lipid membranes. However, because of their heterogeneous membrane distribution, accurate experimental determination of the probe position is difficult. To estimate the location of the ESIPT probes in lipid membranes we have performed fluorescence measurements and molecular dynamics (MD) simulations. In the series composed of 2-(2'-hydroxy-phenyl)-5-phenyl-1,3-oxazole (1), 2-(2'-hydroxy-phenyl)-5-(4'-biphenyl)-1,3-oxazole (2), and 2-(2'-hydroxy-phenyl)-phenanthro[9,10-d]-1,3-oxazole (3), the structure of the ESIPT-moiety of 2-(2'-hydroxy-phenyl)-oxazole was varied by either aromatic ring substitution or annealing, leading to the systematical increase in the hydrophobic character of the probes. The comparison of the fluorescence behavior of probes 1-3 in a wide variety of solvents with those in phospholipid vesicles revealed that all three probes prefer to reside inside a membrane. Our MD results demonstrate that the probes locate from the glycerol residues and the polar carbonyl groups of phospholipids up to hydrophobic acyl chain units. It has been found that the probe location correlates well with the size of the aromatic moiety, being gradually shifted from 11.1 angstrom to 7.6 angstrom from the bilayer center for probes 1 to 3, respectively. Our results may be useful for the design of novel fluorescent probes for fluorescence sensing of specific regions within a lipid membrane.
机译:2,5-二芳基-1,3-氧唑的2'-羟基衍生物称为环境敏感的比例激发状态分子内质子转移(ESIPT)荧光探针,用于监测脂膜的物理化学性质。然而,由于它们的异质膜分布,精确的实验确定探针位置是困难的。为了估计脂质膜中ESIPT探针的位置,我们已经进行了荧光测量和分子动力学(MD)模拟。在系列中由2-(2'-羟基 - 苯基)-5-苯基-1,3-氧唑(1),2-(2'-羟基 - 苯基)-5-(4'-Biphenyl)-1组成,3-氧唑(2)和2-(2'-羟基 - 苯基)-phenanthro [9,10-D] -1,3-氧唑(3),eSipt-部分的结构为2-(2 “ - 羟基 - 苯基” - 芳香环取代或退火改变了恶唑,导致探针的疏水性质的系统增加。探针1-3在各种溶剂中的荧光行为与磷脂囊泡中的荧光行为的比较显示,所有三种探针更倾向于在膜内驻留。我们的MD结果表明,探针从甘油残基和磷脂的极性羰基达到疏水性酰基链单元。已经发现,探针位置与芳族部分的尺寸良好地相关,分别逐渐从11.1埃到7.6埃从双层中心移位至7.6埃探针1至3。我们的结果对于在脂质膜内的特定区域的荧光感测的新荧光探针的设计有用。

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