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整联蛋白与生长因子受体信号通路在粘着斑复合体中的汇聚。

Convergence of integrin and growth factor receptor signaling pathways within the focal adhesion complex.

作者信息

Plopper G E, McNamee H P, Dike L E, Bojanowski K, Ingber D E

机构信息

Department of Surgery, Children's Hospital, Boston, Massachusetts 02115, USA.

出版信息

Mol Biol Cell. 1995 Oct;6(10):1349-65. doi: 10.1091/mbc.6.10.1349.

Abstract

Extracellular matrix controls capillary endothelial cell sensitivity to soluble mitogens by binding integrin receptors and thereby activating a chemical signaling response that rapidly integrates with growth factor-induced signaling mechanisms. Here we report that in addition to integrins, growth factor receptors and multiple molecules that transduce signals conveyed by both types of receptors are immobilized on the cytoskeleton (CSK) and spatially integrated within the focal adhesion complex (FAC) at the site of integrin binding. FACs were rapidly induced in round cells and physically isolated from the remainder of the CSK after detergent-extraction using magnetic microbeads coated with fibronectin or a synthetic RGD-containing peptide. Immunofluorescence microscopy revealed that multiple signaling molecules (e.g., pp60c-src, pp125FAK, phosphatidylinositol-3-kinase, phospholipase C-gamma, and Na+/H+ antiporter) involved in both integrin and growth factor receptor signaling pathways became associated with the CSK framework of the FAC within 15 min after binding to beads coated with integrin ligands. Recruitment of tyrosine kinases to the FAC was also accompanied by a local increase in tyrosine phosphorylation, as indicated by enhanced phosphotyrosine staining at the site of integrin binding. In contrast, neither recruitment of signaling molecules nor increased phosphotyrosine staining was observed when cells bound to beads coated with a control ligand (acetylated low density lipoprotein) that ligates transmembrane scavenger receptors, but does not induce FAC formation. Western blot analysis confirmed that FACs isolated using RGD-beads were enriched for pp60c-src, pp125FAK, phospholipase C-gamma, and the Na+/H+ antiporter when compared with intact CSK or basal cell surface preparations that retained lipid bilayer. Isolated FACs were also greatly enriched for the high affinity fibroblast growth factor receptor flg. Most importantly, isolated FACs continued to exhibit multiple chemical signaling activities in vitro, including protein tyrosine kinase activities (pp60c-src and pp125FAK) as well as the ability to undergo multiple sequential steps in the inositol lipid synthesis cascade. These data suggest that many of the chemical signaling events that are induced by integrins and growth factor receptors in capillary cells may effectively function in a "solid-state" on insoluble CSK scaffolds within the FAC and that the FAC may represent a major site for signal integration between these two regulatory pathways. Future investigations into the biochemical and biophysical basis of signal transduction may be facilitated by this method, which results in isolation of FACs that retain the CSK framework as well as multiple associated chemical signaling activities.

摘要

细胞外基质通过结合整合素受体来控制毛细血管内皮细胞对可溶性促有丝分裂原的敏感性,从而激活一种化学信号反应,该反应能迅速与生长因子诱导的信号传导机制整合。我们在此报告,除了整合素外,生长因子受体以及转导这两种受体所传递信号的多种分子都固定在细胞骨架(CSK)上,并在整合素结合位点处的粘着斑复合体(FAC)内进行空间整合。在用包被有纤连蛋白或含RGD的合成肽的磁性微珠进行去污剂抽提后,圆形细胞中能迅速诱导形成FAC,并将其与CSK的其余部分物理分离。免疫荧光显微镜检查显示,参与整合素和生长因子受体信号通路的多种信号分子(例如pp60c-src、pp125FAK、磷脂酰肌醇-3-激酶、磷脂酶C-γ和Na+/H+反向转运蛋白)在与包被有整合素配体的珠子结合后15分钟内就与FAC的CSK框架相关联。酪氨酸激酶募集到FAC还伴随着酪氨酸磷酸化的局部增加,整合素结合位点处增强的磷酸酪氨酸染色表明了这一点。相比之下,当细胞与包被有对照配体(乙酰化低密度脂蛋白)的珠子结合时,既未观察到信号分子的募集,也未观察到磷酸酪氨酸染色增加,该对照配体连接跨膜清道夫受体,但不诱导FAC形成。蛋白质印迹分析证实,与保留脂质双层的完整CSK或基底细胞表面制剂相比,用RGD微珠分离的FAC富含pp60c-src、pp125FAK、磷脂酶C-γ和Na+/H+反向转运蛋白。分离的FAC还大量富集了高亲和力成纤维细胞生长因子受体flg。最重要的是,分离的FAC在体外继续表现出多种化学信号活性,包括蛋白质酪氨酸激酶活性(pp60c-src和pp125FAK)以及在肌醇脂质合成级联反应中经历多个连续步骤的能力。这些数据表明,整合素和生长因子受体在毛细血管细胞中诱导的许多化学信号事件可能在FAC内不溶性CSK支架上以“固态”有效发挥作用,并且FAC可能代表这两条调节途径之间信号整合的主要位点。这种方法可能有助于未来对信号转导的生化和生物物理基础的研究,该方法可分离出保留CSK框架以及多种相关化学信号活性的FAC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1810/301292/1bee6d889795/mbc00079-0095-a.jpg

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