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Unique arrangement of bone matrix orthogonal to osteoblast alignment controlled by Tspan11-mediated focal adhesion assembly

机译:由TSPAN11介导的局灶性粘附组件控制的骨基质与成骨细胞对准的独特布置

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During tissue construction, cells coordinate extracellular matrix (ECM) assembly depending on the cellular arrangement. The traditional understanding of the relationship between the ECM and cells is limited to the orientation-matched interaction between them. Indeed, it is commonly accepted that the bone matrix (collagen/apatite) is formed along osteoblast orientation. Nonetheless, our recent findings are contrary to the above theory; osteoblasts on nanogrooves organize formation of the bone matrix perpendicular to cell orientation. However, the precise molecular mechanisms underlying the orthogonal organization of bone matrix are still unknown. Here, we show that mature fibrillar focal adhesions (FAs) facilitate the perpendicular arrangement between cells and bone matrix. The osteoblasts aligned along nanogrooves expressed highly mature fibrillar FAs mediated by integrin clustering. Microarray analysis revealed that Tspan11, a member of the transmembrane tetraspanin protein family, was upregulated in cells on the nanogrooved surface compared with that in cells on isotropic, flat, or rough surfaces. Tspan11 silencing significantly disrupted osteoblast alignment and further construction of aligned bone matrix orthogonal to cell orientation. Our results demonstrate that the unique bone matrix formation orthogonal to cell alignment is facilitated by FA maturation. To the best of our knowledge, this report is the first to show that FA assembly mediated by Tspan11 determines the direction of bone matrix organization.
机译:在组织结构期间,细胞坐标根据细胞布置的细胞外基质(ECM)组件。传统理解ECM和细胞之间的关系仅限于它们之间的方向匹配相互作用。实际上,通常接受骨基质(胶原/磷灰石)沿成骨细胞取向形成。尽管如此,我们最近的发现与上述理论相反;纳米罗氏植物细胞组织形成垂直于细胞取向的骨基质的形成。然而,骨基质的正交组织的精确分子机制仍然是未知的。在这里,我们表明成熟的纤维状焦粘连(Fas)促进细胞和骨基质之间的垂直排列。沿纳米腔对准的成骨细胞表达了通过整联蛋白聚类介导的高度成熟的纤维状Fas。微阵列分析显示,与各向同性,平坦或粗糙表面上的细胞相比,TSPAN11是跨膜Tetraspanin蛋白家族的成员在纳米罗藏的表面上上调。 Tspan11沉默显着破坏了成骨细胞对准,进一步构建与细胞取向正交的对齐骨基质。我们的结果表明,通过FA成熟,促进了与细胞比对正交的独特骨基质形成。据我们所知,本报告是第一个显示由TSPAN11中介的FA组装决定了骨矩阵组织的方向。

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