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分子运动和三维纳米定位控制黏着斑处整合素的激活。

Molecular motion and tridimensional nanoscale localization of kindlin control integrin activation in focal adhesions.

机构信息

University Bordeaux, CNRS, Interdisciplinary Institute for Neuroscience, IINS, UMR, Bordeaux, France.

Department of Cell Physiology and Metabolism, Centre Médical Universitaire, Geneva 4, Switzerland.

出版信息

Nat Commun. 2021 May 25;12(1):3104. doi: 10.1038/s41467-021-23372-w.

Abstract

Focal adhesions (FAs) initiate chemical and mechanical signals involved in cell polarity, migration, proliferation and differentiation. Super-resolution microscopy revealed that FAs are organized at the nanoscale into functional layers from the lower plasma membrane to the upper actin cytoskeleton. Yet, how FAs proteins are guided into specific nano-layers to promote interaction with given targets is unknown. Using single protein tracking, super-resolution microscopy and functional assays, we link the molecular behavior and 3D nanoscale localization of kindlin with its function in integrin activation inside FAs. We show that immobilization of integrins in FAs depends on interaction with kindlin. Unlike talin, kindlin displays free diffusion along the plasma membrane outside and inside FAs. We demonstrate that the kindlin Pleckstrin Homology domain promotes membrane diffusion and localization to the membrane-proximal integrin nano-layer, necessary for kindlin enrichment and function in FAs. Using kindlin-deficient cells, we show that kindlin membrane localization and diffusion are crucial for integrin activation, cell spreading and FAs formation. Thus, kindlin uses a different route than talin to reach and activate integrins, providing a possible molecular basis for their complementarity during integrin activation.

摘要

焦点黏附(FAs)起始于涉及细胞极性、迁移、增殖和分化的化学和机械信号。超分辨率显微镜显示,FA 在纳米尺度上从下细胞膜到上肌动蛋白细胞骨架组织成功能性层。然而,FA 蛋白如何被引导到特定的纳米层以促进与给定靶标的相互作用尚不清楚。我们使用单蛋白追踪、超分辨率显微镜和功能测定,将 kindlin 的分子行为和 3D 纳米级定位与其在 FA 中整合素激活中的功能联系起来。我们表明,FA 中整合素的固定取决于与 kindlin 的相互作用。与 talin 不同,kindlin 在 FA 内外的质膜上表现出自由扩散。我们证明,kindlin 的 Pleckstrin Homology 结构域促进了膜扩散和向靠近膜的整合素纳米层的定位,这对于 kindlin 在 FA 中的丰度和功能是必需的。我们使用缺乏 kindlin 的细胞表明,kindlin 的膜定位和扩散对于整合素的激活、细胞铺展和 FA 的形成至关重要。因此,kindlin 采用了与 talin 不同的途径来接近和激活整合素,为整合素激活过程中它们的互补性提供了一个可能的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d545/8149821/61f1455e8c94/41467_2021_23372_Fig1_HTML.jpg

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