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模型生物膜中脂质相和脂质标记物相互作用的动力学成像

Dynamics imaging of lipid phases and lipid-marker interactions in model biomembranes.

作者信息

Ariola Florly S, Mudaliar Deepti J, Walvick Ronn P, Heikal Ahmed A

机构信息

Department of Bioengineering, The Huck Institutes of the Life Sciences, The Pennsylvania State University, 231 Hallowell Building, University Park, Pennsylvania 16802, USA.

出版信息

Phys Chem Chem Phys. 2006 Oct 21;8(39):4517-29. doi: 10.1039/b608629b. Epub 2006 Sep 5.

Abstract

Biomembranes are complex systems that regulate numerous biological processes. Lipid phases that constitute these membranes influence their properties and transport characteristics. Here, we demonstrate the potential of short-range dynamics imaging (excited-state lifetime, rotational diffusion, and order parameter) as a sensitive probe of lipid phases in giant unilamellar vesicles (GUVs). Liquid-disordered and gel phases were labeled with Bodipy-PC at room temperature. Two-photon fluorescence lifetime imaging microscopy of single-phase GUVs reveals more heterogeneity in fluorescence lifetimes of Bodipy in the gel phase (DPPC: 3.8+/-0.6 ns) as compared with the fluid phase (DOPC: 5.2+/-0.2 ns). The phase-specificity of excited-state lifetime of Bodipy-PC is attributed to the stacking of ordered lipid molecules that possibly enhances homo-FRET. Fluorescence polarization anisotropy imaging also reveals distinctive molecular order that is phase specific. The results are compared with DiI-C12-labeled fluid GUVs to investigate the sensitivity of our fluorescence dynamics assay to different lipid-marker interactions. Our results provide a molecular perspective of lipid phase dynamics and the nature of their microenvironments that will ultimately help our understanding of the structure-function relationship of biomembranes in vivo. Furthermore, these ultrafast excited-state dynamics will be used for molecular dynamics simulation of lipid-lipid, lipid-marker and lipid-protein interactions.

摘要

生物膜是调节众多生物过程的复杂系统。构成这些膜的脂质相影响其性质和运输特性。在这里,我们展示了短程动力学成像(激发态寿命、旋转扩散和序参量)作为巨型单层囊泡(GUVs)中脂质相的灵敏探针的潜力。在室温下用Bodipy-PC标记液相无序相和凝胶相。单相GUVs的双光子荧光寿命成像显微镜显示,与流体相(DOPC:5.2±0.2 ns)相比,凝胶相(DPPC:3.8±0.6 ns)中Bodipy的荧光寿命具有更多的异质性。Bodipy-PC激发态寿命的相特异性归因于有序脂质分子的堆积,这可能增强了同型荧光共振能量转移。荧光偏振各向异性成像也揭示了具有相特异性的独特分子有序性。将结果与用DiI-C12标记的流体GUVs进行比较,以研究我们的荧光动力学测定法对不同脂质-标记物相互作用的敏感性。我们的结果提供了脂质相动力学及其微环境性质的分子视角,这最终将有助于我们理解体内生物膜的结构-功能关系。此外,这些超快激发态动力学将用于脂质-脂质、脂质-标记物和脂质-蛋白质相互作用的分子动力学模拟。

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