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Dataset of asymmetric giant unilamellar vesicles prepared via hemifusion: Observation of anti-alignment of domains and modulated phases in asymmetric bilayers.

机译:通过偏见制备的不对称巨型Unilamellar囊泡的数据集:观察域的抗对准和不对称双层的调节相。

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The data provided with this paper are confocal fluorescence images of symmetric giant unilamellar vesicles (GUVs) and asymmetric giant unilamellar vesicles (aGUVs). In this work, aGUVs were prepared using the hemifusion method and are labelled with two different fluorescent dyes, named TFPC and DiD. Both dyes show strong preference for the liquid-disordered (Ld) phase instead of the liquid-ordered (Lo) phase. The partition of these dyes favoring the Ld phase leads to bright Ld phase and dark Lo phase domains in symmetric GUVs observed by fluorescence microscopy. In symmetric vesicles, the bright and the dark domains of the inner and the outer leaflets are aligned. In aGUVs, the fluorescent probe TFPC exclusively labels the aGUV outer leaflet. Here, we show a dataset of fluorescence micrographs obtained using scanning fluorescence confocal microscopy. For the system chosen, the fluorescence signal of TFPC and DiD show anti-alignment of the brighter domains on aGUVs. Important for this dataset, TFPC and DiD have fluorescence emission centered in the green and far-red region of the visible spectra, respectively, and the dyes’ fluorescence emission bands do not overlap. This dataset were collected in the same conditions of the dataset reported in the co-submitted work (Enoki, et al. 2021) where most of aGUVs show domains alignment. In addition, we show micrographs of GUVs displaying modulated phases and macrodomains. We also compare the modulated phases observed in GUVs and aGUVs. For these datasets, we collected a sequence of micrographs using confocal microscopy varying thez-position, termed az-stack. Images were collected in a scanning microscope Nikon Eclipse C2+ (Nikon Instruments, Melville, NY). Additional samples used to measure the lipid concentrations and to prepare GUVs with accurate lipid fractions are also provided with this paper.
机译:本文提供的数据是对称巨型Unilamellar囊泡(GUV)和不对称巨型Unilamellar囊泡(AGUV)的共聚焦荧光图像。在这项工作中,使用偏离方法制备AGUV,并用两种不同的荧光染料标记,命名为TFPC并做到了。两种染料都显示出对液体无序(LD)相而不是液体有序(LO)相的强烈偏好。这些染料的分区有利于LD相的荧光显微镜观察到的对称GUV中的明亮LD相和暗LO相位域。在对称囊泡中,内部和外叶的明亮和深色畴都是对齐的。在AGUVS中,荧光探针TFPC专门标记AGUV外传单。在这里,我们显示使用扫描荧光共聚焦显微镜获得的荧光显微照片的数据集。对于所选择的系统,TFPC的荧光信号并确实显示了AGUV上更亮的域的抗对准。对于该数据集来说,TFPC和确实具有在可见光谱的绿色和远红区域中具有荧光发射,并且染料的荧光发射带不重叠。该数据集在共同提交的工作中报告的数据集的相同条件下收集(Enoki,等,2021),其中大多数Aguvs显示域名对齐。此外,我们展示了显示调制阶段和宏观瘤的GUV的显微照片。我们还比较GUV和AGUV中观察到的调制阶段。对于这些数据集,我们使用分组显微镜改变Z-Loady的共聚焦显微镜来收集一系列显微照片,称为AZ堆叠。在扫描显微镜尼康Eclipse C2 +(尼康仪器,梅尔维尔,NY)中收集图像。用本文还提供了用于测量脂质浓度并用精确的脂质级分制备GUV的另外的样品。

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