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首页> 外文期刊>Journal of Lipid Research >GPI-anchored protein organization and dynamics at the cell surface
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GPI-anchored protein organization and dynamics at the cell surface

机译:GPI锚定的蛋白质组织和细胞表面动力学

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摘要

The surface of eukaryotic cells is a multi-component fluid bilayer in which glycosylphosphatidylinositol (GPI)anchored proteins are an abundant constituent. In this review, we discuss the complex nature of the organization and dynamics of GPI-anchored proteins at multiple spatial and temporal scales. Different biophysical techniques have been utilized for understanding this organization, including fluorescence correlation spectroscopy, fluorescence recovery after photobleaching, single particle tracking, and a number of super resolution methods. Major insights into the organization and dynamics have also come from exploring the short-range interactions of GPI-anchored proteins by fluorescence (or Forster) resonance energy transfer microscopy. Based on the nanometer to micron scale organization, at the microsecond to the second time scale dynamics, a picture of the membrane bilayer emerges where the lipid bilayer appears inextricably intertwined with the underlying dynamic cytoskeleton. These observations have prompted a revision of the current models of plasma membrane organization, and suggest an active actin-membrane composite.
机译:真核细胞的表面是一个多组分流体双层,其中糖基磷脂酰肌醇(GPI)锚定的蛋白质是丰富的成分。在这篇综述中,我们讨论了在多个时空尺度上GPI锚定蛋白的组织和动力学的复杂性质。已经采用了不同的生物物理技术来理解这种组织,包括荧光相关光谱法,光漂白后的荧光回收,单颗粒跟踪以及许多超分辨率方法。对组织和动力学的主要见解还来自通过荧光(或Forster)共振能量转移显微镜研究GPI锚定蛋白的短程相互作用。基于纳米到微米尺度的组织,在微秒到第二次尺度的动力学中,出现了膜双层的图片,其中脂质双层看上去与下面的动态细胞骨架密不可分。这些发现促使人们对目前的质膜组织模型进行了修订,并提出了一种活性肌动蛋白-膜复合物。

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