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Orientation of membrane probes in giant unilamellar vesicles

机译:巨大单层囊泡中膜探针的方向

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Many biological processes are accompanied by changes in the orientation of membrane-embedded molecules. Fluorescence polarization microscopy (FPM) is an optical technique that can be used to determine how the transition dipole of a fluorophore is oriented with respect to the membrane and therefore may detect these changes. The FPM experimental setup is essentially an anisotropy measurement executed on a microscope. A linear polarizer is placed in both the excitation and emission light paths of an inverted microscope, and images are taken with the polarizers parallel or orthogonal. Intensity measurements are recorded at regions on the sample and compared with theoretical predictions to validate a model of dye orientation. We have applied FPM to determine the orientation of 1,2-Dioleoyl-sn-Glycero-3-Phosphoethanolamine-N-(Lissamine Rhodamine B Sulfonyl) (PE-rhodamine) in pure 1-Stearoyl-2-Oleoyl-sn-Glycero-3-Phosphocholine (SOPC) giant unilamellar vesicles (GUVs). Vesicles are widely used as model membranes, and GUVs are particularly useful as cellular models because of their large diameter size (~10-40 μm). A model for membrane dye orientation follows theory developed previously and indicates that PE-rhodamine molecules orient at ~31° with respect to the membrane. A computational routine was developed to minimize deviations between predicted and experimental results. We have also applied FPM to study the orientation of 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI) in GUVs. Preliminary results indicate that DiI is oriented at ~23°.
机译:许多生物过程都伴随着膜嵌入分子取向的变化。荧光偏振显微镜(FPM)是一种光学技术,可用于确定荧光团的跃迁偶极子相对于膜的方向,因此可以检测到这些变化。 FPM实验装置本质上是在显微镜上执行的各向异性测量。将线性偏振器放置在倒置显微镜的激发和发射光路上,并使用平行或正交的偏振器拍摄图像。强度测量值记录在样品区域上,并与理论预测值进行比较,以验证染料取向模型。我们已应用FPM确定纯1-Stearoyl-2-Oleoyl-sn-Glycero-中的1,2-二油酰基-sn-甘油-磷酸三乙醇胺-N-(Lissamine罗丹明B磺酰基)(PE-若丹明)的方向3-磷酸​​胆碱(SOPC)巨大单层囊泡(GUV)。囊泡被广泛用作模型膜,而GUV由于其直径大(〜10-40μm)而特别适合作为细胞模型。膜染料取向模型遵循先前开发的理论,表明PE-若丹明分子相对于膜的取向为〜31°。开发了计算例程,以最大程度地减少预测结果与实验结果之间的偏差。我们还应用FPM研究了GUV中1,1'-二十八烷基-3,3,3',3'-四甲基吲哚基花青高氯酸盐(DiI)的方向。初步结果表明DiI的取向为〜23°。

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