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Fibronectin promotes directional persistence in fibroblast migration through interactions with both its cell-binding and heparin-binding domains

机译:纤连蛋白通过与其细胞结合域和肝素结合域的相互作用促进成纤维细胞迁移的方向性持久性

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摘要

The precise mechanisms through which insoluble, cell-adhesive ligands induce and regulate directional cell migration remain obscure. We recently demonstrated that elevated surface density of physically adsorbed plasma fibronectin (FN) promotes high directional persistence in fibroblast migration. While cell-FN association through integrins α5β1 and αvβ3 was necessary, substrates that selectively engaged these integrins did not support the phenotype. We here show that high directional persistence necessitates a combination of the cell-binding and C-terminal heparin-binding domains of FN, but does not require the engagement of syndecan-4 or integrin α4β1. FN treatment with various fixation agents indicated that associated changes in fibroblast motility were due to biochemical changes, rather than alterations in its physical state. The nature of the coating determined the ability of fibroblasts to assemble endogenous or exogenous FN, while FN fibrillogenesis played a minor, but significant, role in regulating directionality. Interestingly, knockdown of cellular FN abolished cell motility altogether, demonstrating a requirement for intracellular processes in enabling fibroblast migration on FN. Lastly, kinase inhibition experiments revealed that regulation of cell speed and directional persistence are decoupled. Hence, we have identified factors that render full-length FN a promoter of directional migration and discuss the possible, relevant mechanisms.
机译:不溶性,细胞粘附性配体诱导和调节细胞定向迁移的精确机制仍然不清楚。我们最近证明,物理吸附血浆纤连蛋白(FN)的表面密度升高可促进成纤维细胞迁移的高方向持久性。尽管通过整合素α5β1和αvβ3进行细胞-FN结合是必要的,但选择性结合这些整合素的底物不支持该表型。我们在这里显示,高方向性持久性需要FN的细胞结合域和C端肝素结合域的组合,但不需要syndecan-4或整联蛋白α4β1的参与。用各种固定剂进行的FN处理表明,成纤维细胞运动性的相关变化是由于生化变化而不是其物理状态的变化。涂层的性质决定了成纤维细胞组装内源性或外源性FN的能力,而FN的原纤维形成在调节方向性中起着次要但重要的作用。有趣的是,敲除细胞FN完全消除了细胞运动,这说明了使成纤维细胞在FN上迁移所需的细胞内过程。最后,激酶抑制实验表明细胞速度和方向持久性的调节是分离的。因此,我们确定了导致全长FN促进方向迁移的因素,并讨论了可能的相关机制。

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