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脂质域的大小和流动性受几何约束调节。

Size and mobility of lipid domains tuned by geometrical constraints.

机构信息

Institute of Organic and Biomolecular Chemistry, University of Göttingen, 37077 Goettingen, Germany.

Third Institute of Physics, University of Göttingen, 37077 Goettingen, Germany.

出版信息

Proc Natl Acad Sci U S A. 2017 Jul 25;114(30):E6064-E6071. doi: 10.1073/pnas.1704199114. Epub 2017 Jul 10.

Abstract

In the plasma membrane of eukaryotic cells, proteins and lipids are organized in clusters, the latter ones often called lipid domains or "lipid rafts." Recent findings highlight the dynamic nature of such domains and the key role of membrane geometry and spatial boundaries. In this study, we used porous substrates with different pore radii to address precisely the extent of the geometric constraint, permitting us to modulate and investigate the size and mobility of lipid domains in phase-separated continuous pore-spanning membranes (PSMs). Fluorescence video microscopy revealed two types of liquid-ordered () domains in the freestanding parts of the PSMs: () immobile domains that were attached to the pore rims and () mobile, round-shaped domains within the center of the PSMs. Analysis of the diffusion of the mobile domains by video microscopy and particle tracking showed that the domains' mobility is slowed down by orders of magnitude compared with the unrestricted case. We attribute the reduced mobility to the geometric confinement of the PSM, because the drag force is increased substantially due to hydrodynamic effects generated by the presence of these boundaries. Our system can serve as an experimental test bed for diffusion of 2D objects in confined geometry. The impact of hydrodynamics on the mobility of enclosed lipid domains can have great implications for the formation and lateral transport of signaling platforms.

摘要

在真核细胞的质膜中,蛋白质和脂质组织成簇,后者通常称为脂质域或“脂筏”。最近的发现强调了这些域的动态性质以及膜几何形状和空间边界的关键作用。在这项研究中,我们使用具有不同孔径的多孔底物来精确解决几何约束的程度,从而使我们能够调节和研究相分离连续孔贯穿膜(PSM)中脂质域的大小和流动性。荧光视频显微镜揭示了 PSM 自由部分中的两种类型的有序液体()域:()固定于孔边缘的域和()在 PSM 中心的移动、圆形的 域。通过视频显微镜和粒子追踪分析移动 域的扩散表明,与无约束情况相比,域的流动性大大降低。我们将这种降低的流动性归因于 PSM 的几何约束,因为由于存在这些边界而产生的流体动力学效应会大大增加阻力。我们的系统可以作为受限几何形状中二维物体扩散的实验测试平台。流体动力学对封闭脂质域流动性的影响可能对信号平台的形成和横向运输具有重要意义。

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