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A Cell-free System to Study Regulation of Focal Adhesions and of the Connected Actin Cytoskeleton

机译:一种无细胞系统用于研究局灶性粘连的调控 连接的肌动蛋白细胞骨架

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摘要

Assembly and modulation of focal adhesions during dynamic adhesive processes are poorly understood. We describe here the use of ventral plasma membranes from adherent fibroblasts to explore mechanisms regulating integrin distribution and function in a system that preserves the integration of these receptors into the plasma membrane. We find that partial disruption of the cellular organization responsible for the maintenance of organized adhesive sites allows modulation of integrin distribution by divalent cations. High Ca2+ concentrations induce quasi-reversible diffusion of β1 integrins out of focal adhesions, whereas low Ca2+ concentrations induce irreversible recruitment of β1 receptors along extracellular matrix fibrils, as shown by immunofluorescence and electron microscopy. Both effects are independent from the presence of actin stress fibers in this system. Experiments with cells expressing truncated β1 receptors show that the cytoplasmic portion of β1 is required for low Ca2+-induced recruitment of the receptors to matrix fibrils. Analysis with function-modulating antibodies indicates that divalent cation-mediated receptor distribution within the membrane correlates with changes in the functional state of the receptors. Moreover, reconstitution experiments show that purified α-actinin colocalizes and redistributes with β1 receptors on ventral plasma membranes depleted of actin, implicating binding of α-actinin to the receptors. Finally, we found that recruitment of exogenous actin is specifically restricted to focal adhesions under conditions in which new actin polymerization is inhibited. Our data show that the described system can be exploited to investigate the mechanisms of integrin function in an experimental setup that permits receptor redistribution. The possibility to uncouple, under cell-free conditions, events involved in focal adhesion and actin cytoskeleton assembly should facilitate the comprehension of the underlying molecular mechanisms.
机译:人们对动态粘合过程中粘着斑的组装和调节知之甚少。我们在这里描述了使用来自粘附的成纤维细胞的腹质膜来探索调节整联蛋白分布和功能的系统的机制,该系统保留了这些受体整合到质膜中。我们发现负责维持组织的粘附位点的细胞组织的部分破坏允许通过二价阳离子调节整联蛋白的分布。高Ca 2 + 浓度引起β1整合素从粘着斑中准可逆扩散,而低Ca 2 + 浓度引起β1受体沿细胞外基质原纤维不可逆地募集,因为由免疫荧光和电子显微镜显示。两种作用均与该系统中肌动蛋白应力纤维的存在无关。表达截短的β1受体的细胞的实验表明,β1的胞质部分是低Ca 2 + 诱导的受体向基质募集所必需的 原纤维。功能调节抗体的分析表明 膜内二价阳离子介导的受体分布 与受体功能状态的改变相关。 此外,重建实验表明,纯化的α-肌动蛋白 与腹膜血浆上的β1受体共定位并重新分布 肌动蛋白耗尽的膜,暗示α-肌动蛋白与肌动蛋白结合 受体。最后,我们发现外源性肌动蛋白的募集是 在以下情况下专门限于粘连 新的肌动蛋白聚合被抑制。我们的数据表明 可以利用系统来调查 实验中的整合素功能允许 受体再分布。无电池时解耦的可能性 条件,与粘着斑和肌动蛋白细胞骨架有关的事件 汇编应有助于理解基础 分子机制。

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