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通过半融合制备的不对称巨型单层囊泡中液/液相分离的破坏。

Disruption of liquid/liquid phase separation in asymmetric GUVs prepared by hemifusion.

作者信息

Kennison-Cook Kristen B, Heberle Frederick A

机构信息

Department of Chemistry, University of Tennessee, Knoxville, TN 37996, USA.

出版信息

bioRxiv. 2024 Jun 25:2024.06.21.600037. doi: 10.1101/2024.06.21.600037.

Abstract

Model asymmetric bilayers are useful for studying the coupling between lateral and transverse lipid organization. Here, we used calcium-induced hemifusion to create asymmetric giant unilamellar vesicles (aGUVs) for exploring the phase behavior of 16:0-PC/16:1-PC/Cholesterol, a simplified model for the mammalian plasma membrane. Symmetric GUVs (sGUVs) were first prepared using a composition that produced coexisting liquid-disordered and liquid-ordered phases visible by confocal fluorescence microscopy. The sGUVs were then hemifused to a supported lipid bilayer (SLB) composed of uniformly mixed 16:1-PC/Cholesterol. The extent of outer leaflet exchange was quantified in aGUVs in two ways: (1) from the reduction in fluorescence intensity of a lipid probe initially in the sGUV ("probe exit"); or (2) from the gain in intensity of a probe initially in the SLB ("probe entry"). These measurements revealed a large variability in the extent of outer leaflet exchange in aGUVs within a given preparation, and two populations with respect to their phase behavior: a subset of vesicles that remained phase separated, and a second subset that appeared uniformly mixed. Moreover, a correlation between phase behavior and extent of asymmetry was observed, with more strongly asymmetric vesicles having a greater probability of being uniformly mixed. We also observed substantial overlap between these populations, an indication that the uncertainty in measured exchange fraction is high. We developed models to determine the position of the phase boundary (i.e., the fraction of outer leaflet exchange above which domain formation is suppressed) and found that the phase boundaries determined separately from probe-entry and probe-exit data are in good agreement. Our models also provide improved estimates of the compositional uncertainty of individual aGUVs. We discuss several potential sources of uncertainty in the determination of lipid exchange from fluorescence measurements.

摘要

模型不对称双层膜对于研究横向和纵向脂质组织之间的耦合很有用。在此,我们利用钙诱导的半融合来创建不对称巨型单层囊泡(aGUVs),以探索16:0 - 磷脂酰胆碱(PC)/16:1 - PC/胆固醇的相行为,这是哺乳动物质膜的一个简化模型。首先使用一种能产生共存的液相无序相和液相有序相的组成制备对称巨型单层囊泡(sGUVs),通过共聚焦荧光显微镜可见。然后将sGUVs半融合到由均匀混合的16:1 - PC/胆固醇组成的支撑脂质双层(SLB)上。通过两种方式对aGUVs中外层小叶交换的程度进行定量:(1)根据最初在sGUVs中的脂质探针荧光强度的降低(“探针逸出”);或(2)根据最初在SLB中的探针强度的增加(“探针进入”)。这些测量揭示了在给定制剂中aGUVs中外层小叶交换程度的很大变异性,以及关于它们相行为的两个群体:一部分囊泡保持相分离,另一部分看起来是均匀混合的。此外,观察到相行为和不对称程度之间的相关性,不对称性更强的囊泡更有可能均匀混合。我们还观察到这些群体之间有大量重叠,这表明测量的交换分数的不确定性很高。我们开发了模型来确定相边界的位置(即外层小叶交换的分数,超过该分数域形成受到抑制),并发现分别从探针进入和探针逸出数据确定的相边界吻合良好。我们的模型还提供了对单个aGUVs组成不确定性的改进估计。我们讨论了从荧光测量确定脂质交换时几个潜在的不确定性来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f82/11230200/e50515ecbb15/nihpp-2024.06.21.600037v1-f0001.jpg

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