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The Adhesion Modulating Properties of Tenascin-W

机译:腱生蛋白-W的粘附调节特性

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Tenascins are extracellular matrix glycoproteins associated with cell motility, proliferation and differentiation. Tenascin-C inhibits cell spreading by binding to fibronectin; tenascin-R and tenascin-X also have anti-adhesive properties in vitro. Here we have studied the adhesion modulating properties of the most recently characterized tenascin, tenascin-W. C2C12 cells, a murine myoblast cell line, will form broad lamellipodia with stress fibers and focal adhesion complexes after culture on fibronectin. In contrast, C2CI2 cells cultured on tenascin-W fail to spread and form stress fibers or focal adhesion complexes, and instead acquire a multipolar shape with short, actin-tipped pseudopodia. The same stellate morphology is observed when C2C12 cells are cultured on a mixture of fibronectin and tenascin-W, or on fibronectin in the presence of soluble tenascin-W. Tenascin-W combined with fibronectin also inhibits the spreading of mouse embryo fibroblasts when compared with cells cultured on fibronectin alone. The similarity between the adhesion modulating effects of tenascin-W and tenascin-C in vitro led us to study the possibility of tenascin-W compensating for tenascin-C in tenascin-C knockout mice, especially during epidermal wound healing. Dermal fibroblasts harvested from a tenascin-C knockout mouse express tenascin-W, but dermal fibroblasts taken from a wild type mouse do not. However, there is no upregulation of tenascin-W in the dermis of tenascin-C knockout mice, or in the granulation tissue of skin wounds in tenascin-C knockout animals. Similarly, tenascin-X is not upregulated in early wound granulation tissue in the tenascin-C knockout mice. Thus, tenascin-W is able to inhibit cell spreading in vitro and it is upregulated in dermal fibroblasts taken from the tenascin-C knockout mouse, but neither it nor tenascin-X are likely to compensate for missing tenascin-C during wound healing.
机译:肌腱蛋白是与细胞运动,增殖和分化相关的细胞外基质糖蛋白。腱生蛋白-C通过与纤连蛋白结合来抑制细胞扩散。 Tenascin-R和tenascin-X在体外也具有抗粘连特性。在这里,我们研究了最新表征的肌腱蛋白Tenascin-W的粘附调节特性。在纤连蛋白上培养后,C2C12细胞(一种鼠成肌细胞系)将与应力纤维和粘着斑复合物形成宽阔的层状脂膜。相比之下,在腱生蛋白-W上培养的C2Cl2细胞无法散布并形成应力纤维或粘着斑复合物,而是获得具有短的肌动蛋白尖端假足的多极形状。当在纤连蛋白和腱生蛋白-W的混合物上或在存在可溶性腱生蛋白-W的纤连蛋白上培养C2C12细胞时,观察到相同的星状形态。与仅在纤连蛋白上培养的细胞相比,腱生蛋白-W与纤连蛋白的结合还抑制了小鼠胚胎成纤维细胞的扩散。腱生蛋白-W和腱生蛋白-C在体外的粘附调节作用之间的相似性使我们研究了腱生蛋白-W补偿腱生蛋白-C基因敲除小鼠中腱生蛋白-C的可能性,尤其是在表皮伤口愈合过程中。从腱生蛋白-C基因敲除小鼠收获的皮肤成纤维细胞表达腱生蛋白-W,但从野生型小鼠获得的真皮成纤维细胞却没有。但是,在腱生蛋白C基因敲除小鼠的真皮中,或在腱生蛋白C基因敲除动物的皮肤伤口肉芽组织中,腱生蛋白W均没有上调。同样,腱生蛋白-C基因敲除小鼠的早期伤口肉芽组织中,腱生蛋白-X也不上调。因此,腱生蛋白-W能够在体外抑制细胞扩散,并且在从腱生蛋白-C基因敲除小鼠获得的真皮成纤维细胞中被上调,但是它和腱生蛋白-X都不可能补偿伤口愈合过程中缺失的腱生蛋白-C。

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