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首页> 外文期刊>PLoS Biology >Distinct Dynamics of Endocytic Clathrin-Coated Pits and Coated Plaques
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Distinct Dynamics of Endocytic Clathrin-Coated Pits and Coated Plaques

机译:内吞网格蛋白涂层的坑和斑块的不同动力学。

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Clathrin is the scaffold of a conserved molecular machinery that has evolved to capture membrane patches, which then pinch off to become traffic carriers. These carriers are the principal vehicles of receptor-mediated endocytosis and are the major route of traffic from plasma membrane to endosomes. We report here the use of in vivo imaging data, obtained from spinning disk confocal and total internal reflection fluorescence microscopy, to distinguish between two modes of endocytic clathrin coat formation, which we designate as “coated pits” and “coated plaques.” Coated pits are small, rapidly forming structures that deform the underlying membrane by progressive recruitment of clathrin, adaptors, and other regulatory proteins. They ultimately close off and bud inward to form coated vesicles. Coated plaques are longer-lived structures with larger and less sharply curved coats; their clathrin lattices do not close off, but instead move inward from the cell surface shortly before membrane fission. Local remodeling of actin filaments is essential for the formation, inward movement, and dissolution of plaques, but it is not required for normal formation and budding of coated pits in the cells we have studied. We conclude that there are at least two distinct modes of clathrin coat formation at the plasma membrane—classical coated pits and coated plaques—and that these two assemblies interact quite differently with other intracellular structures.
机译:网格蛋白是保守分子机器的支架,该分子机器已经进化为捕获膜片,然后将膜片捏成交通载体。这些载体是受体介导的内吞作用的主要载体,并且是从质膜向内体运输的主要途径。我们在这里报告了使用从旋转盘共聚焦和全内反射荧光显微镜获得的体内成像数据来区分内吞网格蛋白涂层形成的两种模式,我们将其称为“涂层凹坑”和“涂层斑块”。包被的小孔是快速形成的小结构,通过逐步吸收网格蛋白,衔接子和其他调节蛋白使底层膜变形。它们最终关闭并向内芽形成包被的囊泡。涂层斑块是寿命较长的结构,具有较大且弯曲程度较小的涂层。它们的网格蛋白晶格不会关闭,而是在膜裂变前不久从细胞表面向内移动。肌动蛋白丝的局部重塑对于噬菌斑的形成,向内运动和溶解至关重要,但对于我们研究的细胞中正常形成和包被的凹陷芽并不需要。我们得出的结论是,质膜上至少有两种不同的网格蛋白涂层形成模式-经典的涂层凹坑和涂层斑块-并且这两个组件与其他细胞内结构的相互作用非常不同。

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