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桩蛋白、纽蛋白、踝蛋白和 VASP 的动力学和分布取决于黏着斑的位置和取向。

Dynamics and distribution of paxillin, vinculin, zyxin and VASP depend on focal adhesion location and orientation.

机构信息

Erasmus Medical Centre Rotterdam, Department of Pathology, Optical Imaging Centre, Rotterdam, The Netherlands.

出版信息

Sci Rep. 2019 Jul 18;9(1):10460. doi: 10.1038/s41598-019-46905-2.

Abstract

Focal adhesions (FAs) are multiprotein structures that link the intracellular cytoskeleton to the extracellular matrix. They mediate cell adhesion and migration, crucial to many (patho-) physiological processes. We examined in two cell types from different species the binding dynamics of functionally related FA protein pairs: paxillin and vinculin versus zyxin and VASP. In photobleaching experiments ~40% of paxillin and vinculin remained stably associated with a FA for over half an hour. Zyxin and VASP predominantly displayed more transient interactions. We show protein binding dynamics are influenced by FA location and orientation. In FAs located close to the edge of the adherent membrane paxillin, zyxin and VASP were more dynamic and had larger bound fractions. Zyxin and VASP were also more dynamic and had larger bound fractions at FAs perpendicular compared to parallel to this edge. Finally, we developed a photoconversion assay to specifically visualise stably bound proteins within subcellular structures and organelles. This revealed that while paxillin and vinculin are distributed evenly throughout FAs, their stably bound fractions form small clusters within the FA-complex. These clusters are more concentrated for paxillin than for vinculin and are mostly found at the proximal half of the FA where actin also enters.

摘要

黏着斑(FAs)是一种将细胞内的细胞骨架与细胞外基质连接起来的多蛋白结构。它们介导细胞黏附和迁移,这对许多(病理)生理过程至关重要。我们在来自不同物种的两种细胞类型中研究了功能相关的 FA 蛋白对(paxillin 和 vinculin 与 zyxin 和 VASP)的结合动力学。在光漂白实验中,~40%的 paxillin 和 vinculin 与 FA 的稳定结合持续了半小时以上。zyxin 和 VASP 主要表现出更短暂的相互作用。我们表明,蛋白结合动力学受 FA 的位置和方向的影响。在靠近附着膜边缘的 FA 中,paxillin、zyxin 和 VASP 更具动态性,且结合部分更大。与平行于该边缘的 FA 相比,垂直于该边缘的 FA 中的 zyxin 和 VASP 也更具动态性,且结合部分更大。最后,我们开发了一种光转化测定法,专门用于可视化亚细胞结构和细胞器内稳定结合的蛋白质。这表明,虽然 paxillin 和 vinculin 在 FA 中均匀分布,但它们的稳定结合部分在 FA 复合物内形成小簇。这些簇在 paxillin 中比 vinculin 更集中,并且主要位于 FA 中 actin 进入的近端一半。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9a1/6639384/ad38103da488/41598_2019_46905_Fig1_HTML.jpg

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